WO1993022866A1 - Interactive telephone system for optimizing service economy - Google Patents

Interactive telephone system for optimizing service economy Download PDF

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Publication number
WO1993022866A1
WO1993022866A1 PCT/US1993/003774 US9303774W WO9322866A1 WO 1993022866 A1 WO1993022866 A1 WO 1993022866A1 US 9303774 W US9303774 W US 9303774W WO 9322866 A1 WO9322866 A1 WO 9322866A1
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WO
WIPO (PCT)
Prior art keywords
calling party
call
originator
connection
station
Prior art date
Application number
PCT/US1993/003774
Other languages
French (fr)
Inventor
James Harry Alleman
Original Assignee
Paragon Services International, Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=25361405&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO1993022866(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Paragon Services International, Inc. filed Critical Paragon Services International, Inc.
Publication of WO1993022866A1 publication Critical patent/WO1993022866A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M15/00Arrangements for metering, time-control or time indication ; Metering, charging or billing arrangements for voice wireline or wireless communications, e.g. VoIP
    • H04M15/80Rating or billing plans; Tariff determination aspects
    • H04M15/8044Least cost routing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M15/00Arrangements for metering, time-control or time indication ; Metering, charging or billing arrangements for voice wireline or wireless communications, e.g. VoIP
    • H04M15/49Connection to several service providers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/4228Systems providing special services or facilities to subscribers in networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/48Arrangements for recalling a calling subscriber when the wanted subscriber ceases to be busy
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q3/00Selecting arrangements
    • H04Q3/0016Arrangements providing connection between exchanges
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2215/00Metering arrangements; Time controlling arrangements; Time indicating arrangements
    • H04M2215/42Least cost routing, i.e. provision for selecting the lowest cost tariff
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2215/00Metering arrangements; Time controlling arrangements; Time indicating arrangements
    • H04M2215/46Connection to several service providers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2215/00Metering arrangements; Time controlling arrangements; Time indicating arrangements
    • H04M2215/74Rating aspects, e.g. rating parameters or tariff determination apects
    • H04M2215/745Least cost routing, e.g. Automatic or manual, call by call or by preselection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2242/00Special services or facilities
    • H04M2242/22Automatic class or number identification arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/22Arrangements for supervision, monitoring or testing
    • H04M3/36Statistical metering, e.g. recording occasions when traffic exceeds capacity of trunks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/42025Calling or Called party identification service
    • H04M3/42034Calling party identification service
    • H04M3/42059Making use of the calling party identifier
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M3/00Automatic or semi-automatic exchanges
    • H04M3/42Systems providing special services or facilities to subscribers
    • H04M3/487Arrangements for providing information services, e.g. recorded voice services or time announcements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13095PIN / Access code, authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13103Memory
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13138Least cost routing, LCR
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13152Callback
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13204Protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13377Recorded announcement
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2213/00Indexing scheme relating to selecting arrangements in general and for multiplex systems
    • H04Q2213/13405Dual frequency signaling, DTMF
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q3/00Selecting arrangements
    • H04Q3/72Finding out and indicating number of calling subscriber

Definitions

  • the present invention relates to telephone switching systems in general and, more particularly, to telephone systems wherein interconnections between calling and called parties are performed under control of data processing or computer equipment.
  • the present invention is especially useful in conjunction with telephone interconnection systems which are intended for providing the most economical domestic and international telephone service to those who subscribe to the service by providing apparatus and methods in a system organized for quickly and efficiently employing the most advanta ⁇ geous domestic and international tariff rates to user originated traffic.
  • Interexchange carriers are telecommunication carriers that provide what is commonly known as long distance, or interexchange, service between geographical areas called Local Access Transport Areas (LATAs). It is understood LATAs were created by a United States Federal Court in an antitrust case. The court limited local exchange companies (LECs) to providing telephone service only within LATAs (intraLATA service) and expressly forbid LECs to provide service between LATAs (interLATA service) . Thus, IXCs receive originating traffic from the LEC in that LATA, carry the traffic to the terminating LATA, and deliver it to the LEC serving the termi ⁇ nating LATA.
  • LATAs Local Access Transport Areas
  • U.S. Patent 4,930,150 by Katz applies a processor to make available a multiplicity of formats for services such as public polls, lotteries, auctions, promotions, sales operations and games.
  • the telephone terminal of the user operates a switch to select a format with the processor testing to determine whether the request is proper.
  • Katz et al in U.S. Patent 4,932,046 describes use of a database to simulate a call termination signal to prompt the caller to hang up their telephone at the end of a recorded message.
  • an input line is dedicated to a particular user. That is, for each subscribing user there is a unique dedicated input line.
  • the system employs an autodialer configu- ration to call the user who responds by entering the desired number. The system dials that number on another line and then bridges the user with it upon response by the called party.
  • the aforementioned system can likewise establish conference call patches, or the like, all at the local call tariff rates.
  • Such a system is described in the January 9, 1992 New York Times article entitled Hot- irinq Overseas Telephone Calls by Anthony Ramirez. It suffers the disadvantage of requiring input telephone trunks dedicated to specific users with one such trunk for each user. It also is limited in flexibility and adaptability by the autodialer hardware. Thus a need remains for a system that can function with a minimum number of dedicated telephone trunks, but is expandable with ease to accommodate large numbers of subscribers while likewise enjoying the ability to rapidly relocate the entire system to other geographic areas to take advantage of changing tariff structures.
  • This invention in cooperation with a public telephone network, provides an automated call processing system that incorporates an audio response unit and computer in a system arrangement for enabling a subscriber to initiate telephone calls whose network identified point-of-origin is a physical site other than the physical location of the subscriber.
  • This objective will, among other things, enable subscribers to effectively realize the most economically advantageous use of differences between tariff rates.
  • this invention enables subscribers to initiate calls through the public telephone network without concern of unauthorized disclosure of the network identification number assigned to that subscriber.
  • This invention also makes it possible to collect, store and archive detailed information of calls originated by subscribers for the purpose of billing subscribers and assisting with subscriber call management.
  • LEC low-power telephone number
  • IXC inter ⁇ exchange carrier
  • the system When a subscriber uses an assigned telephone number to establish a call to this service, the system will identify the subscriber by using a personal computer or switch software program. The system returns to the subscriber with either ringing or a unique tone. When the subscriber hears the ringing or unique tone, the subscriber manually, or automatically, terminates the call by hanging up.
  • Termination of the subscriber originated call signals the system to seize an outbound circuit over which it outpulses a number the subscriber has previously had entered into the system subscriber list database as that subscriber's "call-back" number.
  • the subscriber answers the system call-back and is prompted to input the telephone number of the party the subscriber wishes to call (hereinafter referred to as "called party number").
  • party number the telephone number of the party the subscriber wishes to call
  • th.e system seizes a second outbound circuit, outpulses the called party number over the second outbound circuit and bridges the subscriber onto the second line.
  • the system continues to monitor the connection for a signal that the subscriber wishes to either terminate the session, or establish another connection to another called party.
  • the present invention includes a method of providing economical telephone service by employing the most advantageous tariff between an originator and a called party.
  • a central location service center is established at which a call-back telephone number is provided for each subscribing call originator.
  • a number is assigned for use for all calls that are placed by that originator. This assigned number is used to call the service center whereupon the originator is identified by the service center.
  • a signal is sent from the service center to the originator, thus indicating that the originator is identified whereupon the originator is instructed or prompted to terminate the call. Termination by the calling party is sensed at the service center followed by seizing of a first outbound circuit over which the service center outputs the call-back number for the identified originator. This operation reconnects the service center via a voice connection to the originator.
  • the originator is prompted to input the telephone number of the called party the originator intends to call.
  • a second outbound circuit is seized at the service center whereupon the called party number is outputted to this second outbound circuit.
  • the originator is bridged to the second outbound circuit thus connecting the originator with the called party.
  • the process, or system apparatus, in accordance with this invention is preferably contained at a central location or service center. Since it is essentially self-contained for its purpose and requires a minimal number of lines connecting it to an exchange, the present invention is adaptable for relatively easy relocation to interface with the most economic tariff rate location wherever that might physically present itself throughout the world.
  • the process and apparatus of this invention interac- tively establishes communication links between a calling party and one or more parties called by that calling party. It employs input and output connec ⁇ tions to a telephone exchange that provides interface switching of the calling party with the central location.
  • a signal is generated containing data uniquely identifying the originating station of the calling party which signal is placed on the input connection to the central location whenever the calling party places a call to that input connection from their station.
  • the central location stores the unique identifying data of one or more authorized calling party subscribers.
  • a signal on the central station input connection attempting to establish communications between the exchange and the central location causes the system to compare the data of the identifying signal associated with the connection attempt with the contents in the data storage. In response to a favorable comparison, a call is originated from this central location to the calling party station. Signals are then received from the calling party station for identifying a called party station with which the calling party desires to establish a communication connection. That is, these calling party originated signals identify a third party station. The central location finally bridges a communication connection between the calling party station and the third party station.
  • the present invention responds to a favorable identification comparison as mentioned above by returning an audible signal to the calling party.
  • Failure of the calling party to terminate the call attempt a predetermined period of time after the recognition signal is given or from the time of commencement of an attempt to establish a connection from the calling party station terminates further processing of the connec ⁇ tion attempt at the central location.
  • Connection attempt termination because of the time-out function or a failure to produce a favorable comparison, can trigger a process which results in temporarily establishing a communication connection with the calling party station for presenting an audio message thereto.
  • the central location typi ⁇ cally will disconnect from the calling station after completion of an audio message.
  • the present invention is particularly well suited for advantageously utilizing the calling party identifying data in the form of the contemporary direct inward dial number produced by the exchange.
  • the central location stores in a memory the direct inward dial number for each calling party authorized to utilize the system.
  • the system obtains the direct inward dial number from storage for placing that number on an output connection to the exchange.
  • a failure of the called party to answer the call attempt from the central location can result in provision of an indication to the calling party that they can select between terminating connection attempts or attempting to establish a connection with another third party.
  • the invention can accom ⁇ modate establishment of a multiple party conference call in response to calling parties instructions to the central location.
  • the system is likewise well suited for receiving and collecting management and billing information on calls established by the system. This enables a determination of the extent of use of the system by authorized and/or unauthorized calling parties.
  • the central location can respond to a special signal originated from the calling party station so as to terminate further communication and communication attempts with the calling party station.
  • This invention can utilize a dual tone multi-frequency signal as the above mentioned special signal from said calling party station.
  • the method and apparatus of this invention provides an economical telephone service by employing the most advantageous tariff between an originator and one or more called parties.
  • a service center is established at which a call-back telephone number is provided for each originator, and at which a number is assigned for use for all calls that are placed by that originator. The assigned number is used to call the service center whereupon the originator is identified by the service center.
  • a signal is sent from the service center to the originator thus indicating that the originator is identified whereupon the originator is instructed to terminate the call. Sensing originator call attempt termination, the service center responds by seizing a first outbound circuit over which the service center outputs the call-back number for the identified originator thereby reconnecting the service center to the originator.
  • the originator is prompted to input the telephone number of the called party the originator intends to call.
  • a second outbound circuit is seized at the service center whereupon the called party number is outputted to the second outbound circuit. Bridging the originator to the second outbound circuit thus connects the originator with the called party.
  • FIGURE 1 is a generalized block diagram of a system organization in accordance with the present invention.
  • FIGURE 2 is a flow diagram of a component function of the system for determining the validity of a caller or subscriber attempt to dial into the system.
  • FIGURE 3 is a flow diagram of a component function of the system responsive to either an invalid caller attempt to dial into the system or failure of a valid user to terminate the call within a predeter ⁇ mined period of time.
  • FIGURE 4 is a flow diagram of a component function of the system response in the presence of a valid input from a user or subscriber including an automated outdial attempt.
  • FIGURE 5 is a flow diagram of a component function of a system attempt to establish a connection with a called party in response to a proper user input.
  • a network identification number commonly known as an Automatic Number Identification (ANI) and/or Calling Number Identification (CNI) are widely employed in the telephone industry. Such numbers are required by the public telephone network to rate, route and bill appropriate parties for completed telephone calls. Current technologies in the public telephone network makes it possible to disclose the calling party network identification numbers to the called party during the ringing cycle of the called party telephone. The present invention advantageously utilizes (but does not require) disclosure of these identification numbers to the called party.
  • ANI Automatic Number Identification
  • CNI Calling Number Identification
  • the present invention advantageously utilizes the Direct Inward Dial (DID) numbers.
  • DID Direct Inward Dial
  • the size of the groups may vary between LECs, but a group of one hundred numbers is often a typical group. When these numbers are sequential, they are commonly referred to as blocks, but groups of random numbers are also used.
  • sequential numbering is not required.
  • the customer leasing the numbers from an exchange does not have to lease a corresponding terminating circuit for each number in the group in order to place a call to each number. Instead, the customer leases local facilities in quantities the customer feels are adequate to handle traffic from the leased numbers.
  • the central office of the terminating LEC the LEC that assigned the numbers
  • the numbers that are passed are called the Direct Inward Dial, or DID, numbers.
  • a calling party in the case of this invention, a "subscriber"
  • the system can identify that subscriber because it will receive the last four, or five, numbers of the number the subscriber dialed. It is thereafter a relatively conventional software process to determine call validity by matching the DID numbers against a subscriber list.
  • FIG. 1 A block diagram of the system environment of this invention is presented in FIG. 1.
  • a user or subscriber is represented as connected to the system via a telephone handset at station 10.
  • the user initiates the system operation by placing a call through the domestic and/or international public telephone network (IXC) 14 using one of a number of telephone numbers assigned to the service center master system 12 by local exchange company (LEC) 15.
  • IXC domestic and/or international public telephone network
  • LEC local exchange company
  • LEC 15 directs the call over incoming direct inward dial (hereinafter referred to as DID) circuits 16 to a call response unit (CRU) 20.
  • CRU 20 includes a computer, controller, or other suitable date processing unit along with appropriate sensing circuit connections as is conventional for data acquisition and control technology.
  • CRU 20 will attempt to identify the caller by collecting the DID numbers passed to the system by the LEC 15, and deliver those digits to the subscriber table server 21, which contains the database that identifies subscribers by matching DID numbers against a list of call-back numbers provided by subscribers.
  • CRU 20 is a computer, or switch, that is connected to the LEC 15 central office and consisting of integrated components that permit the system to perform a number of functions integral to this invention. This includes switching functions to handle line (circuit) connections; interactive voice response operations; database controller for subscriber identification; and a system message detail recording (SMDR) unit 24 to provide informa ⁇ tion necessary to create call records.
  • SMDR system message detail recording
  • DTMF means Dual Tone Multifrequency. These are signaling tones used by customer premises equipment and LEC central offices to signal each other. A common use of DTMF by customer premises equipment is to pass to the central office the telephone number to which the calling party wishes to establish a connection.
  • CRU 20 will attempt to identify the caller by prompting the caller to enter, via DTMF, a personal identification number (PIN) unique to that subscriber.
  • PIN personal identification number
  • the PIN is then delivered to the subscriber table server 21 for comparison against the subscriber list of call-back numbers. It is important to note that, while the use of DID numbers is one of the most practicable means of obtaining subscriber recognition at this time, this invention is not limited to DID identifi ⁇ cation of subscribers.
  • this invention may achieve subscriber recognition through a variety of means, such as, but not limited to, calling number identi ⁇ fication, automatic number identification and other technologies that permit recognition of the calling party as offered by LECs, IXCs and other tele ⁇ communications carriers.
  • the CRU 20 delivers the DID digits to the subscriber table server 21, it also delivers call detail information to the system message detail recording database (SMDR) 24.
  • the call detail information includes information relative to all events relating to the setup and completion of telephone calls to and from this invention.
  • CRU 20 responds to the incoming call signal by generating either a traditional ring-back signal, or a nonstandard sound (music, or some tone other than the normal ring-back signal). As a condition of the service, upon hearing the ring-back or nonstandard tone, the subscriber hangs up (goes on-hook) .
  • CRU 20 seizes one of the outbound circuits 25 from the group of such circuits that are connected directly to an IXC 14.
  • the call-back number is then outpulsed by the DTMF recognition and dialing unit (hereinafter referred to as the DTMF generator) 26.
  • CRU 20 activates voice responder unit 28 which prompts the subscriber to enter, via DTMF, a called party number.
  • CRU 20 seizes a second outbound circuit 25.
  • DTMF Generator 26 recognizes the called party number DTMF digits entered by the subscriber and outpulses those digits over the second seized circuit. DTMF generator 26 activates bridging function 29 to bridge the subscriber onto the second outbound circuit. DTMF recognition and dialing unit 26 also monitors call progress tones; e.g., ringing, busy, off-hook (answer) .
  • CRU 20 continues to monitor the seized circuits 25 for a prearranged DTMF sequence that the DTMF Generator 26 will recognize as a signal from the subscriber indicating an intention to terminate the call in progress and possibly to initiate another call.
  • CRU 20 disconnects from the outbound circuit 25 connecting the called party to the system.
  • the voice response unit 28, or some other audio signal, prompts the subscriber to input another called party number.
  • FIG. 1 a series of operating processes are executed, as illustrated in the general flow diagrams of FIGS. 2 through 4, as described in detail below.
  • FIG. 2 illustrates the operating process associated with determining that a caller indial attempt is valid or invalid. This process is initiated at 35 when a caller dials one of the telephone numbers assigned to the system 12.
  • CRU 20 receives the incoming call signal at 36 and the DID numbers at input 16 from the LEC 15, and responds at 37 with either a traditional ring-back signal, or non- standard sound.
  • Answer supervision is a signaling process by which the terminating LEC central office signals to the originating LEC central office that the called number has gone off-hook (answered) and timing should commence for billing purposes.
  • CRU 20 delivers the DID numbers to the subscriber table server 21 at 38, which is followed by an attempt at 39 to match the DID digits with a subscriber call-back number stored in the database of subscriber table server 21.
  • a favorable match results at 42 in the sending of the subscriber telephone number to the subscriber call processing unit (not shown).
  • caller 10 terminates the call to CRU 20 by hanging up (go on-hook) within a pre ⁇ determined time at 40.
  • the valid caller indial attempt is completed at 41.
  • the invalid call procedure of FIG. 3 is invoked at 44 if either a match of a valid DID number stored in the server 21 database is not produced or a failure is detected at 40 that the caller 10 has not terminated the call within a predetermined time period.
  • the time period for subscribers to terminate the connection to CRU 20 upon hearing the ring-back, or unique tone, is predetermined. Typically suitable such time periods considered acceptable for this invention can vary between five and fifteen seconds.
  • FIG. 3 illustrates the process in response to failure conditions.
  • the first response at 45 is to the fact that calling party 10 failed to hang up (go on-hook) within a predetermined time. This is treated as initiation of an invalid caller indial attempt.
  • CRU 20 at 48 goes off-hook and sends answer supervision to the originating central office.
  • answer supervision is received at the originating central office, call completion takes place and timing of the call begins.
  • CRU 20 has the capability to send a voice message to the caller during an invalid caller indial attempt stating that service reached by the calling party is for subscribers only, as shown at 50.
  • the message could also include a telephone number the calling party can call to initiate service if he, or she, desires. This message is sometimes hereinafter referred to as the "subscriber only message".
  • CRU 20 terminates the call by going on-hook at 51.
  • FIG. 3 also illustrates at 46 the response to an invalid caller indial attempt indication that is created when the subscriber table server fails to match the DID digits received with a valid subscriber call-back number.
  • CRU 20 indicates to the SMDR software at 49 that the invalid caller indial attempt did occur.
  • FIG. 4 illustrates the operating process in response to a subscriber outdial attempt.
  • the FIG. 2 process results in a decision that a valid subscriber indial attempt has occurred at 41, this produces initializing input 54 in FIG. 4.
  • the subscriber table server (21) matches the DID digits with a valid subscriber call-back number at 55.
  • CRU 20 next seizes one outbound circuit 56, and initiates DTMF outdial of the subscriber call-back number over the seized outbound circuit at 57.
  • CRU 20 When the subscriber answers, CRU 20 will recognize the subscriber off-hook at 58, and prompt the subscriber at 59 to enter, via DTMF, a called party number. If decision 60 recognizes subscriber input of a called party number, CRU 20 seizes a second outbound circuit 62, and initiates a called party attempt 63. The steps associated with the called party attempt operating process are illustrated in FIG. 5, and described in detail below.
  • Decision 58 also recognizes whenever, after out- dialing the subscriber call-back number, CRU 20 has not received an off-hook within a predetermined time. This results in CRU 20 terminating the call (66) and an incomplete subscriber outdial attempt is sent at 65 for recording in the SMDR database.
  • FIG. 5 illustrates the steps associated with a called party attempt operating process.
  • CRU 20 outpulses the called party number at 70, and bridges the subscriber onto the second outbound circuit to monitor call progress tones at 71.
  • the called party answering or going off-hook within a predetermined time causes decision 72 to recognize that the called party attempt process is complete, and the CRU will continue to monitor the circuit 73.
  • CRU 20 decision 72 if CRU 20 decision 72 has not received an off-hook signal from the called party within a predetermined time 75, CRU 20 will time out and the call is terminated at 76. Also, if decision 78 notes that the subscriber terminated the connection by going on-hook (hanging up) before the called party answers, the called party attempt is terminated at 79, and an incomplete called party attempt is recorded in the SMDR data at 80.
  • decision block 82 When decision block 82 recognizes presence of a subscriber input of another called party number, another called party attempt is initiated as CRU 20 outpulses the new called party number at 70.
  • a call is terminated 76, the call session ended 83 with call information sent to the SMDR software, and a call record created 84 under the following two conditions: First, if the CRU times out at 75, either because it does not receive a called party number within a predetermined time after prompting the subscriber to enter such a number 86, or because it does not receive an off-hook from a called party within a predetermined time 72; and second, if at any time CRU 20 receives a disconnect signal from either the subscriber or the called party end of the circuit 85.

Abstract

A central location of a telephone switching system (12) is placed where favorable local exchange tariffs are available. The central location includes a caller responsive unit (20) which compares the caller identification accompanying the call attempt against a prestored list of identification data assigned to authorized system users. A positive comparison result causes the system to signal to the originator to terminate the call attempt. The system thereafter calls the originating caller telephone (10) from the central location. The system allows the originating caller to input the number of the party to whom a connection is desired by the originator. The system responds by establishing a connection with the called party and bridges communications between the called and calling parties at the central location. The system includes the capability of employing audio responses of various types to calling or called parties.

Description

INTERACTIVE TELEPHONE SYSTEM FOR OPTIMIZING SERVICE ECONOMY
BACKGROUND OF THE INVENTION
Field of the Invention
The present invention relates to telephone switching systems in general and, more particularly, to telephone systems wherein interconnections between calling and called parties are performed under control of data processing or computer equipment. The present invention is especially useful in conjunction with telephone interconnection systems which are intended for providing the most economical domestic and international telephone service to those who subscribe to the service by providing apparatus and methods in a system organized for quickly and efficiently employing the most advanta¬ geous domestic and international tariff rates to user originated traffic.
Tariff rates for originating traffic often vary greatly. There is a need, therefore, to provide a service that will allow callers to take advantage of tariff rate differences to achieve the most economi¬ cally advantageous cost for their respective domestic and international traffic.
Description of the Prior Art
Interexchange carriers (IXCs) are telecommunication carriers that provide what is commonly known as long distance, or interexchange, service between geographical areas called Local Access Transport Areas (LATAs). It is understood LATAs were created by a United States Federal Court in an antitrust case. The court limited local exchange companies (LECs) to providing telephone service only within LATAs (intraLATA service) and expressly forbid LECs to provide service between LATAs (interLATA service) . Thus, IXCs receive originating traffic from the LEC in that LATA, carry the traffic to the terminating LATA, and deliver it to the LEC serving the termi¬ nating LATA.
A wide variety of sometimes user interactive arrangements for applying data processing equipment or computers to telephone line switching and control have developed. For instance, U.S. Patent 4,071,698 by Barger et al describes an arrangement for demon¬ strating and then selling products, such as audio recordings, by the use of a telephone system. It employs either a human operator or an automated program as alternative interfaces. Both procedures make use of an audio repeater wherein product demonstrations are stored.
Statistical acquisition and analysis using a telephone system is disclosed in U.S. Patent 4,792,968 by Katz. An example is in the obtaining of medical data from a selected group of people. A voice generator or a human operator prompts the called party to originate data by telephone instru¬ ment actuation. Yet another statistical data handling telephone system using audio units for prompting while utilizing multiple processors is shown in U.S. Patent 4,845,739 by Katz.
U.S. Patent 4,930,150 by Katz applies a processor to make available a multiplicity of formats for services such as public polls, lotteries, auctions, promotions, sales operations and games. The telephone terminal of the user operates a switch to select a format with the processor testing to determine whether the request is proper. Katz et al in U.S. Patent 4,932,046 describes use of a database to simulate a call termination signal to prompt the caller to hang up their telephone at the end of a recorded message.
An arrangement for conference call interconnecting a plurality of parties is shown in U.S. Patents 4,939,773 and 4,987,590 by Katz. The system bridges all the telephones of an intended group with a voice generator for prompting. Authorization of the participants is verified.
Use of automatic audio response units in combination with telephone switching operations is shown in U.S. Patent 3,482,057 by Abbott et al. A more interactive functioning in conjunction with a telephone call relay system is described in U.S. Patent 4,975,945 by Carbullido. Remote user terminals communicate with an Audio Response Unit (ARU) or an attended terminal to acquire from the originating user certain identification and/or credit card informa¬ tion. A unique call reference number is assigned to the call and stored. If a need to relay the call exists, the caller is bridged to a terminal block for person to person audio communications.
The prior art has also recognized that it is possible to realize cost savings because of the telephone tariff differentials as between various geographic locations. For instance, calls originating from the United States are frequently less expensive than calls originating from another country.
Thus, a system was developed to take advantage of this tariff dif erential. In the prior art system, an input line is dedicated to a particular user. That is, for each subscribing user there is a unique dedicated input line. When the user calls into the system on that line, typically allowing it to ring only once, the system employs an autodialer configu- ration to call the user who responds by entering the desired number. The system dials that number on another line and then bridges the user with it upon response by the called party.
The aforementioned system can likewise establish conference call patches, or the like, all at the local call tariff rates. Such a system is described in the January 9, 1992 New York Times article entitled Hot- irinq Overseas Telephone Calls by Anthony Ramirez. It suffers the disadvantage of requiring input telephone trunks dedicated to specific users with one such trunk for each user. It also is limited in flexibility and adaptability by the autodialer hardware. Thus a need remains for a system that can function with a minimum number of dedicated telephone trunks, but is expandable with ease to accommodate large numbers of subscribers while likewise enjoying the ability to rapidly relocate the entire system to other geographic areas to take advantage of changing tariff structures.
SUMMARY OF THE INVENTION
This invention, in cooperation with a public telephone network, provides an automated call processing system that incorporates an audio response unit and computer in a system arrangement for enabling a subscriber to initiate telephone calls whose network identified point-of-origin is a physical site other than the physical location of the subscriber. This objective will, among other things, enable subscribers to effectively realize the most economically advantageous use of differences between tariff rates.
Further, this invention enables subscribers to initiate calls through the public telephone network without concern of unauthorized disclosure of the network identification number assigned to that subscriber. This invention also makes it possible to collect, store and archive detailed information of calls originated by subscribers for the purpose of billing subscribers and assisting with subscriber call management.
The objectives and advantages of this invention are achieved by providing subscribers with one, or more, telephone numbers that are assigned to this service by the local exchange telephone company provider
(hereinafter referred to as the LEC), or an inter¬ exchange carrier (hereinafter referred to as an IXC) . When a subscriber uses an assigned telephone number to establish a call to this service, the system will identify the subscriber by using a personal computer or switch software program. The system returns to the subscriber with either ringing or a unique tone. When the subscriber hears the ringing or unique tone, the subscriber manually, or automatically, terminates the call by hanging up.
Termination of the subscriber originated call signals the system to seize an outbound circuit over which it outpulses a number the subscriber has previously had entered into the system subscriber list database as that subscriber's "call-back" number. The subscriber answers the system call-back and is prompted to input the telephone number of the party the subscriber wishes to call (hereinafter referred to as "called party number"). Following input of the called party number, th.e system seizes a second outbound circuit, outpulses the called party number over the second outbound circuit and bridges the subscriber onto the second line. After the called party answers, the system continues to monitor the connection for a signal that the subscriber wishes to either terminate the session, or establish another connection to another called party.
Accordingly, the present invention includes a method of providing economical telephone service by employing the most advantageous tariff between an originator and a called party. A central location service center is established at which a call-back telephone number is provided for each subscribing call originator. A number is assigned for use for all calls that are placed by that originator. This assigned number is used to call the service center whereupon the originator is identified by the service center.
A signal is sent from the service center to the originator, thus indicating that the originator is identified whereupon the originator is instructed or prompted to terminate the call. Termination by the calling party is sensed at the service center followed by seizing of a first outbound circuit over which the service center outputs the call-back number for the identified originator. This operation reconnects the service center via a voice connection to the originator.
The originator is prompted to input the telephone number of the called party the originator intends to call. A second outbound circuit is seized at the service center whereupon the called party number is outputted to this second outbound circuit. Finally, the originator is bridged to the second outbound circuit thus connecting the originator with the called party.
The process, or system apparatus, in accordance with this invention, is preferably contained at a central location or service center. Since it is essentially self-contained for its purpose and requires a minimal number of lines connecting it to an exchange, the present invention is adaptable for relatively easy relocation to interface with the most economic tariff rate location wherever that might physically present itself throughout the world.
The process and apparatus of this invention interac- tively establishes communication links between a calling party and one or more parties called by that calling party. It employs input and output connec¬ tions to a telephone exchange that provides interface switching of the calling party with the central location. A signal is generated containing data uniquely identifying the originating station of the calling party which signal is placed on the input connection to the central location whenever the calling party places a call to that input connection from their station.
The central location stores the unique identifying data of one or more authorized calling party subscribers. A signal on the central station input connection attempting to establish communications between the exchange and the central location causes the system to compare the data of the identifying signal associated with the connection attempt with the contents in the data storage. In response to a favorable comparison, a call is originated from this central location to the calling party station. Signals are then received from the calling party station for identifying a called party station with which the calling party desires to establish a communication connection. That is, these calling party originated signals identify a third party station. The central location finally bridges a communication connection between the calling party station and the third party station.
Preferably, the present invention responds to a favorable identification comparison as mentioned above by returning an audible signal to the calling party. This indicates the favorable comparison result so that the calling party will know to terminate the call attempt so as to allow the central location to originate a call to the call originating station. Failure of the calling party to terminate the call attempt a predetermined period of time after the recognition signal is given or from the time of commencement of an attempt to establish a connection from the calling party station terminates further processing of the connec¬ tion attempt at the central location.
Connection attempt termination, because of the time-out function or a failure to produce a favorable comparison, can trigger a process which results in temporarily establishing a communication connection with the calling party station for presenting an audio message thereto. The central location typi¬ cally will disconnect from the calling station after completion of an audio message.
The present invention is particularly well suited for advantageously utilizing the calling party identifying data in the form of the contemporary direct inward dial number produced by the exchange. Thus, the central location stores in a memory the direct inward dial number for each calling party authorized to utilize the system. Following a favorable comparison of the calling party number with a stored number, the system obtains the direct inward dial number from storage for placing that number on an output connection to the exchange.
A failure of the called party to answer the call attempt from the central location can result in provision of an indication to the calling party that they can select between terminating connection attempts or attempting to establish a connection with another third party. The invention can accom¬ modate establishment of a multiple party conference call in response to calling parties instructions to the central location.
The system is likewise well suited for receiving and collecting management and billing information on calls established by the system. This enables a determination of the extent of use of the system by authorized and/or unauthorized calling parties. After establishing a communication connection with the calling party station, the central location can respond to a special signal originated from the calling party station so as to terminate further communication and communication attempts with the calling party station. This invention can utilize a dual tone multi-frequency signal as the above mentioned special signal from said calling party station.
The method and apparatus of this invention provides an economical telephone service by employing the most advantageous tariff between an originator and one or more called parties. A service center is established at which a call-back telephone number is provided for each originator, and at which a number is assigned for use for all calls that are placed by that originator. The assigned number is used to call the service center whereupon the originator is identified by the service center.
A signal is sent from the service center to the originator thus indicating that the originator is identified whereupon the originator is instructed to terminate the call. Sensing originator call attempt termination, the service center responds by seizing a first outbound circuit over which the service center outputs the call-back number for the identified originator thereby reconnecting the service center to the originator.
The originator is prompted to input the telephone number of the called party the originator intends to call. A second outbound circuit is seized at the service center whereupon the called party number is outputted to the second outbound circuit. Bridging the originator to the second outbound circuit thus connects the originator with the called party.
Those having normal skill in the art will recognize the foregoing and other objects, features, advantages and applications of the present invention from the following more detailed description of the preferred embodiments as illustrated in the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
FIGURE 1 is a generalized block diagram of a system organization in accordance with the present invention.
FIGURE 2 is a flow diagram of a component function of the system for determining the validity of a caller or subscriber attempt to dial into the system.
FIGURE 3 is a flow diagram of a component function of the system responsive to either an invalid caller attempt to dial into the system or failure of a valid user to terminate the call within a predeter¬ mined period of time.
FIGURE 4 is a flow diagram of a component function of the system response in the presence of a valid input from a user or subscriber including an automated outdial attempt.
FIGURE 5 is a flow diagram of a component function of a system attempt to establish a connection with a called party in response to a proper user input.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
A network identification number, commonly known as an Automatic Number Identification (ANI) and/or Calling Number Identification (CNI), are widely employed in the telephone industry. Such numbers are required by the public telephone network to rate, route and bill appropriate parties for completed telephone calls. Current technologies in the public telephone network makes it possible to disclose the calling party network identification numbers to the called party during the ringing cycle of the called party telephone. The present invention advantageously utilizes (but does not require) disclosure of these identification numbers to the called party.
Accordingly, the present invention advantageously utilizes the Direct Inward Dial (DID) numbers. Under LEC tariffs it is possible to lease a block, or group, of telephone numbers. The size of the groups may vary between LECs, but a group of one hundred numbers is often a typical group. When these numbers are sequential, they are commonly referred to as blocks, but groups of random numbers are also used.
For purposes of this invention, sequential numbering is not required. The customer leasing the numbers from an exchange does not have to lease a corresponding terminating circuit for each number in the group in order to place a call to each number. Instead, the customer leases local facilities in quantities the customer feels are adequate to handle traffic from the leased numbers. When a caller dials one of the numbers in the group, the central office of the terminating LEC (the LEC that assigned the numbers) will complete the call over any of the leased local facilities that are available and also pass the last four, sometimes five, numbers that the calling party dialed. The numbers that are passed are called the Direct Inward Dial, or DID, numbers.
If a calling party (in the case of this invention, a "subscriber") is given one of the assigned numbers to dial to reach the system, the system can identify that subscriber because it will receive the last four, or five, numbers of the number the subscriber dialed. It is thereafter a relatively conventional software process to determine call validity by matching the DID numbers against a subscriber list. '
While a detailed illustrative description of a preferred embodiment of this invention is provided herein, those having normal skill in the art will recognize that there are a wide variety of physical communications systems, data formats and operating structures, available to implement this invention. Some of those alternatives may comprise structures and processes quite different from those of the disclosed description. Consequently, the specific structural and functional details disclosed herein are merely representative, yet in that regard they are deemed to afford the best description for purposes of disclosure of an enabling preferred embodiment and to provide a basis for understanding the spirit of this invention.
A block diagram of the system environment of this invention is presented in FIG. 1. A user or subscriber is represented as connected to the system via a telephone handset at station 10. The user initiates the system operation by placing a call through the domestic and/or international public telephone network (IXC) 14 using one of a number of telephone numbers assigned to the service center master system 12 by local exchange company (LEC) 15.
LEC 15 directs the call over incoming direct inward dial (hereinafter referred to as DID) circuits 16 to a call response unit (CRU) 20. CRU 20 includes a computer, controller, or other suitable date processing unit along with appropriate sensing circuit connections as is conventional for data acquisition and control technology. CRU 20 will attempt to identify the caller by collecting the DID numbers passed to the system by the LEC 15, and deliver those digits to the subscriber table server 21, which contains the database that identifies subscribers by matching DID numbers against a list of call-back numbers provided by subscribers.
More particularly, CRU 20 is a computer, or switch, that is connected to the LEC 15 central office and consisting of integrated components that permit the system to perform a number of functions integral to this invention. This includes switching functions to handle line (circuit) connections; interactive voice response operations; database controller for subscriber identification; and a system message detail recording (SMDR) unit 24 to provide informa¬ tion necessary to create call records.
Callers are also identifiable via IXC 14 generated DTMF signals that are passed to the system. DTMF means Dual Tone Multifrequency. These are signaling tones used by customer premises equipment and LEC central offices to signal each other. A common use of DTMF by customer premises equipment is to pass to the central office the telephone number to which the calling party wishes to establish a connection.
If the caller reaches CRU 20 by calling an "800" number assigned to the system, CRU 20 will attempt to identify the caller by prompting the caller to enter, via DTMF, a personal identification number (PIN) unique to that subscriber. The PIN is then delivered to the subscriber table server 21 for comparison against the subscriber list of call-back numbers. It is important to note that, while the use of DID numbers is one of the most practicable means of obtaining subscriber recognition at this time, this invention is not limited to DID identifi¬ cation of subscribers.
As further technological services and features of the public network are introduced, particularly those services and features relying upon Signalling System 7 technology, this invention may achieve subscriber recognition through a variety of means, such as, but not limited to, calling number identi¬ fication, automatic number identification and other technologies that permit recognition of the calling party as offered by LECs, IXCs and other tele¬ communications carriers.
At the same time the CRU 20 delivers the DID digits to the subscriber table server 21, it also delivers call detail information to the system message detail recording database (SMDR) 24. The call detail information includes information relative to all events relating to the setup and completion of telephone calls to and from this invention.
CRU 20 responds to the incoming call signal by generating either a traditional ring-back signal, or a nonstandard sound (music, or some tone other than the normal ring-back signal). As a condition of the service, upon hearing the ring-back or nonstandard tone, the subscriber hangs up (goes on-hook) .
When the subscriber table server 21 matches the DID digits with a subscriber call-back number, CRU 20 seizes one of the outbound circuits 25 from the group of such circuits that are connected directly to an IXC 14. The call-back number is then outpulsed by the DTMF recognition and dialing unit (hereinafter referred to as the DTMF generator) 26. When the subscriber answers (goes off-hook), CRU 20 activates voice responder unit 28 which prompts the subscriber to enter, via DTMF, a called party number.
When the subscriber enters a called party number, CRU 20 seizes a second outbound circuit 25. DTMF
Generator 26 recognizes the called party number DTMF digits entered by the subscriber and outpulses those digits over the second seized circuit. DTMF generator 26 activates bridging function 29 to bridge the subscriber onto the second outbound circuit. DTMF recognition and dialing unit 26 also monitors call progress tones; e.g., ringing, busy, off-hook (answer) .
At all times, including after the called party has answered, CRU 20 continues to monitor the seized circuits 25 for a prearranged DTMF sequence that the DTMF Generator 26 will recognize as a signal from the subscriber indicating an intention to terminate the call in progress and possibly to initiate another call. Upon receiving the prearranged DTMF sequence, CRU 20 disconnects from the outbound circuit 25 connecting the called party to the system. The voice response unit 28, or some other audio signal, prompts the subscriber to input another called party number.
In the illustrative system example of FIG. 1, a series of operating processes are executed, as illustrated in the general flow diagrams of FIGS. 2 through 4, as described in detail below.
FIG. 2 illustrates the operating process associated with determining that a caller indial attempt is valid or invalid. This process is initiated at 35 when a caller dials one of the telephone numbers assigned to the system 12. CRU 20 receives the incoming call signal at 36 and the DID numbers at input 16 from the LEC 15, and responds at 37 with either a traditional ring-back signal, or non- standard sound. By not going off-hook, the termi¬ nating central office for LEC 15 will not return answer supervision to the originating end of the circuit. Answer supervision is a signaling process by which the terminating LEC central office signals to the originating LEC central office that the called number has gone off-hook (answered) and timing should commence for billing purposes.
At the same time, CRU 20 delivers the DID numbers to the subscriber table server 21 at 38, which is followed by an attempt at 39 to match the DID digits with a subscriber call-back number stored in the database of subscriber table server 21. A favorable match results at 42 in the sending of the subscriber telephone number to the subscriber call processing unit (not shown). Upon hearing the ring-back, or nonstandard tone, caller 10 terminates the call to CRU 20 by hanging up (go on-hook) within a pre¬ determined time at 40.
When the caller hangs up concurrent with a valid DID match 39, the valid caller indial attempt is completed at 41. Note that the invalid call procedure of FIG. 3 is invoked at 44 if either a match of a valid DID number stored in the server 21 database is not produced or a failure is detected at 40 that the caller 10 has not terminated the call within a predetermined time period. The time period for subscribers to terminate the connection to CRU 20 upon hearing the ring-back, or unique tone, is predetermined. Typically suitable such time periods considered acceptable for this invention can vary between five and fifteen seconds.
FIG. 3 illustrates the process in response to failure conditions. The first response at 45 is to the fact that calling party 10 failed to hang up (go on-hook) within a predetermined time. This is treated as initiation of an invalid caller indial attempt. When the predetermined time for calling party 10 to hang up elapses without a disconnect by caller 10, CRU 20 at 48 goes off-hook and sends answer supervision to the originating central office. When answer supervision is received at the originating central office, call completion takes place and timing of the call begins.
CRU 20 has the capability to send a voice message to the caller during an invalid caller indial attempt stating that service reached by the calling party is for subscribers only, as shown at 50. The message could also include a telephone number the calling party can call to initiate service if he, or she, desires. This message is sometimes hereinafter referred to as the "subscriber only message". After delivering the message, CRU 20 terminates the call by going on-hook at 51.
FIG. 3 also illustrates at 46 the response to an invalid caller indial attempt indication that is created when the subscriber table server fails to match the DID digits received with a valid subscriber call-back number. CRU 20 indicates to the SMDR software at 49 that the invalid caller indial attempt did occur.
Note that it is assumed for purposes of^this invention that the failure of the calling party to terminate the call within the predetermined time limit means that the calling party is not a subscriber to the service provided by this invention. The call initiation into the central location 12 is thus deemed coincidental or perhaps even unauthorized.
FIG. 4 illustrates the operating process in response to a subscriber outdial attempt. When the FIG. 2 process results in a decision that a valid subscriber indial attempt has occurred at 41, this produces initializing input 54 in FIG. 4. The subscriber table server (21) matches the DID digits with a valid subscriber call-back number at 55. CRU 20 next seizes one outbound circuit 56, and initiates DTMF outdial of the subscriber call-back number over the seized outbound circuit at 57.
When the subscriber answers, CRU 20 will recognize the subscriber off-hook at 58, and prompt the subscriber at 59 to enter, via DTMF, a called party number. If decision 60 recognizes subscriber input of a called party number, CRU 20 seizes a second outbound circuit 62, and initiates a called party attempt 63. The steps associated with the called party attempt operating process are illustrated in FIG. 5, and described in detail below.
Decision 58 also recognizes whenever, after out- dialing the subscriber call-back number, CRU 20 has not received an off-hook within a predetermined time. This results in CRU 20 terminating the call (66) and an incomplete subscriber outdial attempt is sent at 65 for recording in the SMDR database.
FIG. 5 illustrates the steps associated with a called party attempt operating process. When a second outbound circuit is seized, as described at 62 in FIG. 4, CRU 20 outpulses the called party number at 70, and bridges the subscriber onto the second outbound circuit to monitor call progress tones at 71. The called party answering or going off-hook within a predetermined time causes decision 72 to recognize that the called party attempt process is complete, and the CRU will continue to monitor the circuit 73.
Conversely, if CRU 20 decision 72 has not received an off-hook signal from the called party within a predetermined time 75, CRU 20 will time out and the call is terminated at 76. Also, if decision 78 notes that the subscriber terminated the connection by going on-hook (hanging up) before the called party answers, the called party attempt is terminated at 79, and an incomplete called party attempt is recorded in the SMDR data at 80.
Finally, if the subscriber inputs a prearranged DTMF sequence at 81, either prior to the called party answering or at anytime after the called party attempt is completed but before a disconnect signal is received, decision 81 terminates the called party attempt in progress, and CRU 20 will prompt the subscriber to input another called party number at
82. When decision block 82 recognizes presence of a subscriber input of another called party number, another called party attempt is initiated as CRU 20 outpulses the new called party number at 70.
A call is terminated 76, the call session ended 83 with call information sent to the SMDR software, and a call record created 84 under the following two conditions: First, if the CRU times out at 75, either because it does not receive a called party number within a predetermined time after prompting the subscriber to enter such a number 86, or because it does not receive an off-hook from a called party within a predetermined time 72; and second, if at any time CRU 20 receives a disconnect signal from either the subscriber or the called party end of the circuit 85.
While the exemplary preferred embodiment of the present invention are described herein with particu- larity, those having normal skill in the art will recognize various changes, modifications, additions and applications other than those specifically mentioned herein without departing from the spirit of this invention.
What is claimed is:

Claims

1. A system at a central location for interactively establishing communication links between a calling party and one or more parties called by said calling party using input and output connections to a telephone exchange interconnecting the calling party with the central location wherein a signal containing data uniquely identifying the originating station of the calling party is placed on the input connection whenever the calling party places a call to said input connection from said station comprising: means storing the unique identifying data of the calling party, means responsive to a signal on said input connection indicating an attempt to establish communications between the exchange and the central location for comparing the data of the identifying signal associated with the connection attempt with the contents of said storing means, means operable in response to a favorable comparison between said input data and said stored data for originating a call from said central location to said calling party station, means responsive to signals received from said calling party station for establishing a communica¬ tion connection with a third party station identified by said received signals, and means for bridging a communication connection between said calling party station and said third party station.
2. A system in accordance with claim 1 which includes means operable after a predetermined period of time from commencement of an attempt to establish a connection from said calling party station for terminating said connection attempt.
3. A system in accordance with claim 2 wherein said connection attempt terminating means includes means for temporarily establishing a communication connection with said calling party station for presenting an audio message thereto, and means for disconnecting said central location and said calling station after completion of said audio message.
4. A system in accordance with claim 1 wherein said means operable in response to a favorable comparison includes means for returning an audible signal to the calling party indicative of said favorable comparison, whereby the calling party terminates the call attempt for allowing said central location to originate a call thereto.
5. A system in accordance with claim 4 wherein the calling party identifying data is the direct inward dial number produced by the exchange, said storing means containing the direct inward dial number for each calling party authorized to utilize said system, and said favorable comparison responsive means obtains the direct inward dial number from said storing means upon occurrence of said favorable comparison for placing said number on a said output connection to said exchange.
6. A system in accordance with claim 1 which includes means for receiving information on calls established by the system for enabling a determina¬ tion of the extent of use of said system by said calling parties.
7. A system in accordance with claim 1 which includes means responsive to failure of the called party to answer the call attempt for providing an indication to the calling party that they can select between terminating connection attempts and attempting to establish a connection with another third party.
8. A system in accordance with claim 1 which includes means operable after establishing a communication connection with the calling party station for responding to a special signal originated from the calling party station so as to terminate further communications and communication attempts with said calling party station.
9. A system in accordance with claim 8 wherein said special signal responding means includes means for recognizing a dual tone multi-frequency signal from said calling party station.
10. A method for interactively controlling communi¬ cation links between a calling party and one or more parties called by said calling party through a telephone exchange wherein a signal containing data uniquely identifying the originating station of the calling party is transmitted by said exchange whenever said originating station places a call into said exchange comprising the steps of establishing telephone line input and output connections from a central location to said telephone exchange, storing the unique identifying data of the calling party at said central location, comparing the data of the identifying signal associated with a connection attempt with the said stored data in response to a signal on a said input connection attempting to establish communications between said exchange and said central location, responding to a favorable comparison between said input data and said stored data for originating a call from said central location to said calling party station, receiving signals from said calling party station for establishing a communication connection with a third party station identified by said received signals, and bridging a communication connection between said calling party station and said third party station.
11. The method in accordance with claim 10 which includes the step of completing a connection to the said input line for placing an audio message thereon whenever said comparison step fails to produce a favorable result.
12. The method in accordance with claim 11 which includes the step of enabling said connection completing and audio message placing step whenever the calling party fails to terminate the call attempt after passage of a predetermined period of time.
13. The method in accordance with claim 10 wherein each calling party station has a unique direct inward dial number assigned thereto and said exchange produces said direct inward dial number in conjunction with attempts to establish a connection with said central location, said storing step including the step of storing a plurality of direct inward dial numbers each representing an authorized subscriber of said central location, said step of originating a call to said calling party including the step of retrieving the stored said direct inward dial number assigned to that calling party.
14. A method providing economical telephone service by employing the most advantageous tariff between .an originator and one or more called parties, comprising the steps of providing a service center at which a call-back telephone number is provided for each originator and at which a number is assigned for use for all calls that are placed by that originator, using the assigned number to call the service center whereupon the originator is identified by the service center, sending a signal from the service center to the originator thus indicating that the originator is identified whereupon the originator is instructed to terminate the call, sensing originator call attempt termination at the service center and responding thereto by seizing a first outbound circuit over which the service center outputs the call-back number for the identified originator thereby reconnecting the service center to the originator, prompting the originator to input the telephone number of the called party the originator intends to call, seizing a second outbound circuit at the service center whereupon the called party number is outputted to the second outbound circuit, and bridging the originator to the second outbound circuit thus connecting the originator with the called party.
15. The method in accordance with claim 14 which includes the step of connecting the outbound connec¬ tions of said service center with a telephone exchange having an economical tariff rate.
16. The method in accordance with claim 15 which includes the step of determining that the originator has failed to terminate the call attempt a predeter¬ mined time after said prompting step.
17. The method in accordance with claim 16 which includes the step of responding to a failure to determine that the originator is authorized to establish communications by completing the connection to the originator input line to the central location and presenting an audio message on said line announcing to the originator that the call placement is not authorized.
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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1997013352A1 (en) * 1995-09-29 1997-04-10 Northern Telecom Limited Methods and apparatus for originating voice calls
WO1997028657A1 (en) * 1996-02-02 1997-08-07 Telecom Finland Oy Method and system for changing a direction of establishing a telecommunication connection
US5661790A (en) * 1995-11-03 1997-08-26 Ericsson, Inc. Call back service for a regulatory restrictive area
EP0802663A2 (en) * 1996-04-15 1997-10-22 Nec Corporation Communication system and its accounting method
EP0814592A1 (en) * 1996-06-19 1997-12-29 Firma Erika Köchler Radio programmable module for call transfer
WO1997050235A1 (en) * 1996-06-24 1997-12-31 Northern Telecom Limited Telecommunications call centre
WO1998054882A1 (en) * 1997-05-28 1998-12-03 Telefonaktiebolaget Lm Ericsson User controlled call setup through manual switchboard
FR2781968A1 (en) * 1998-07-31 2000-02-04 Sagem PROCESS FOR ESTABLISHING A COMMUNICATION BETWEEN TWO INFORMATION TRANSMISSION TERMINALS AND A TERMINAL FOR IMPLEMENTING THE PROCESS
WO2000022845A1 (en) * 1998-10-12 2000-04-20 Siemens Aktiengesellschaft Method for establishing a communications link in a public communications network
GB2458142A (en) * 2008-03-06 2009-09-09 Graham Lindsay Call bridging device wherein calls are charged to the telephone account associated with the call bridging device.

Families Citing this family (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020131574A1 (en) * 1992-04-24 2002-09-19 Alleman James H. Interactive system for optimizing service economy
US6266328B1 (en) * 1996-08-26 2001-07-24 Caritas Technologies, Inc. Dial up telephone conferencing system controlled by an online computer network
US5987112A (en) * 1997-09-03 1999-11-16 At&T Corp. International call back technique with reduced post dialing delay
US6944278B1 (en) * 1997-11-26 2005-09-13 Sun Microsystems, Inc. Internet-activated callback service
AU5707098A (en) * 1997-12-12 1999-07-05 Thomson Licensing S.A. System and method of responding to an incoming call while conferencing
JP2000041110A (en) * 1998-07-22 2000-02-08 Fujitsu Ltd Incoming call processing method, incoming call processing unit and recording medium recording incoming call processing program and readable by computer
US6665392B1 (en) * 1999-05-05 2003-12-16 Spiderphone.Com, Inc. Associating data connections with conference call telephone
CA2271828A1 (en) * 1999-05-11 2000-11-11 Infointeractive Inc. Internet based telephone line
US6574324B1 (en) * 1999-11-24 2003-06-03 Bellsouth Intellectual Property Corporation System and method for long distance automatic call-back
US7068776B1 (en) * 2000-04-19 2006-06-27 Gamble Oliver W Method and system for routing calls to desire discount telephone services
DE10023868A1 (en) * 2000-05-16 2001-11-22 Siemens Ag Establishing connection between a local and a central communications device central control unit initiating new link establishment by accessing call-back module in central device
US7106743B1 (en) 2000-10-18 2006-09-12 West Corporation Telecommunications system including live operators
US7197124B2 (en) * 2002-01-18 2007-03-27 Qualcomm Incorporated In-bound call directed telephone station and method of directing a telephone station based on an in-bound call
US7010107B1 (en) 2002-12-20 2006-03-07 Yong Lee Internet conference call bridge management system
US20040240653A1 (en) * 2003-02-05 2004-12-02 Artoun Ramian Information communication apparatus and method
US8712144B2 (en) * 2003-04-30 2014-04-29 Deere & Company System and method for detecting crop rows in an agricultural field
US7116768B2 (en) * 2003-09-26 2006-10-03 Dx/Dy Voice Processing, Inc. Collect callback
US20050169456A1 (en) * 2003-09-26 2005-08-04 Dx/Dy Voice Processing, Inc. Collect callback
US20050163296A1 (en) * 2003-09-26 2005-07-28 Dx/Dy Voice Processing, Inc. Collect callback for web-based access
US7474634B1 (en) 2004-03-12 2009-01-06 West Corporation System, methods, and computer-readable media for expedited access to conference calls
US8670538B1 (en) 2004-04-06 2014-03-11 West Corporation International conferencing via globally distributed cascading servers
US8238536B1 (en) 2004-04-06 2012-08-07 West Corporation Call redirect via centralized bridges
US20070036310A1 (en) * 2005-07-25 2007-02-15 Dx/Dy Voice Processing, Inc. Members calling card
EP1929805B1 (en) * 2005-09-27 2017-11-15 Morgan Stanley Mobile enterprise applications over telephony systems and methods
US20070201646A1 (en) * 2006-02-16 2007-08-30 Mdm Intellectual Property Llc Callback Service
US7860995B1 (en) 2007-11-29 2010-12-28 Saynow Corporation Conditional audio content delivery method and system
US20070274496A1 (en) * 2006-04-20 2007-11-29 Ujjwal Singh Method and system for multimodal communication using a phone number
US9065918B2 (en) * 2006-10-28 2015-06-23 Alcatel Lucent Third party call control utilizing a voice user interface
WO2010027352A1 (en) * 2008-09-02 2010-03-11 Sumo Technologies, Llc. Telecommunication and advertising business model and method of utilizing same
US8744909B2 (en) 2009-09-03 2014-06-03 Papatel, Inc. System and method of guaranteed cognitive awareness
WO2011028902A1 (en) 2009-09-03 2011-03-10 Sumo Technologies, Llc System and method for individual sequential campaign

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4086438A (en) * 1977-03-07 1978-04-25 Teletech Corporation Automatic interconnection system
US4958153A (en) * 1987-04-08 1990-09-18 Nec Corporation Method and apparatus for priority control of incoming calls at ISDN terminals
US5027384A (en) * 1986-09-22 1991-06-25 Dytel Corporation Personalized automatic call routing
US5029196A (en) * 1988-07-11 1991-07-02 Dytel Corporation Automated call screening
US5168515A (en) * 1989-11-27 1992-12-01 Unifi Communications Corporation Switchless automatic call distribution system

Family Cites Families (27)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3482057A (en) * 1966-01-28 1969-12-02 Ibm Automatic intercept system
US4071698A (en) * 1977-01-10 1978-01-31 Franklin V. Barger, Jr. Telephone system for audio demonstration and marketing of goods or services
US4672660A (en) * 1983-02-14 1987-06-09 Amtel Communications, Inc. Method and system for identifying telephone callers
US4555594A (en) * 1983-08-03 1985-11-26 At&T Bell Laboratories Telephone interexchange signaling protocol
US4577066A (en) * 1983-08-03 1986-03-18 At&T Bell Laboratories Telephone interexchange call routing
US4565903A (en) * 1983-08-03 1986-01-21 At&T Bell Laboratories Telephone interexchange carrier selection
US4594477A (en) * 1984-03-07 1986-06-10 At&T Technologies, Inc. PBX equipment with dial signal modification
US4893335A (en) * 1984-09-14 1990-01-09 Fuller Research And Development Company Remote access telephone control system
US4792968A (en) * 1985-07-10 1988-12-20 Fdr Interactive Technologies Statistical analysis system for use with public communication facility
US4930150A (en) * 1985-07-10 1990-05-29 First Data Resources Inc. Telephonic interface control system
US5128984A (en) * 1985-07-10 1992-07-07 First Data Resources Inc. Telephone interface call processing system with call selectivity
US5218631A (en) * 1985-07-10 1993-06-08 First Data Resources Inc. Telephonic-interface game control system
US4845739A (en) * 1985-07-10 1989-07-04 Fdr Interactive Technologies Telephonic-interface statistical analysis system
US4769834A (en) * 1987-01-30 1988-09-06 American Telephone And Telegraph Company And At&T Information Systems Inc. Inter-exchange carrier access
US4791665A (en) * 1987-01-30 1988-12-13 American Telephone And Telegraph Company, At&T Information Systems Inter-exchange carrier access selection feature for a PBX user
US4757267A (en) * 1987-06-17 1988-07-12 Applied Telematics, Inc. Telephone system for connecting a customer to a supplier of goods
US4797913A (en) * 1987-08-04 1989-01-10 Science Dynamics Corporation Direct telephone dial ordering service
US5199062A (en) * 1988-01-20 1993-03-30 Phone Base Systems Inc. Telephone communications system including a digital telephone switch, a voice response unit and a stored program sequence for controlling both the switch and the voice response unit
US4866763A (en) * 1988-08-17 1989-09-12 American Telephone And Telegraph Company, At&T Bell Laboratories Interexchange carrier automatic route selection system
US4987590A (en) * 1989-06-26 1991-01-22 First Data Resources Inc. Multiple party telephone control system
US4939773A (en) * 1989-06-26 1990-07-03 First Data Resources, Inc. Multiple party telephone control system
US4932046A (en) * 1989-07-28 1990-06-05 First Data Resources Inc. Telephone programming system for automated calling
US4975945A (en) * 1989-08-21 1990-12-04 First Data Resources Inc. Universal telephone call relay system
US4972464A (en) * 1989-11-01 1990-11-20 U.S. Sprint Communications Company Limited System for placement of a long distance telephone carrier point-of-presence and call routing
US5181236A (en) * 1990-09-25 1993-01-19 Rockwell International Corporation Automatic call returning method for call distributor with message record capability
US5113430A (en) * 1990-10-01 1992-05-12 United States Advanced Network, Inc. Enhanced wide area audio response network
US5185782A (en) * 1991-02-08 1993-02-09 A&T Bell Laboratories ACD arrangement for automatically returning a call at a time specified by the original caller

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4086438A (en) * 1977-03-07 1978-04-25 Teletech Corporation Automatic interconnection system
US5027384A (en) * 1986-09-22 1991-06-25 Dytel Corporation Personalized automatic call routing
US4958153A (en) * 1987-04-08 1990-09-18 Nec Corporation Method and apparatus for priority control of incoming calls at ISDN terminals
US5029196A (en) * 1988-07-11 1991-07-02 Dytel Corporation Automated call screening
US5168515A (en) * 1989-11-27 1992-12-01 Unifi Communications Corporation Switchless automatic call distribution system

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6430282B1 (en) 1995-09-29 2002-08-06 Nortel Networks Limited Methods and apparatus for originating voice calls
WO1997013352A1 (en) * 1995-09-29 1997-04-10 Northern Telecom Limited Methods and apparatus for originating voice calls
US5661790A (en) * 1995-11-03 1997-08-26 Ericsson, Inc. Call back service for a regulatory restrictive area
US6301348B1 (en) 1996-02-02 2001-10-09 Sonera Oy Method and system for changing a direction of establishing a telecommunication connection
WO1997028657A1 (en) * 1996-02-02 1997-08-07 Telecom Finland Oy Method and system for changing a direction of establishing a telecommunication connection
EP0802663A2 (en) * 1996-04-15 1997-10-22 Nec Corporation Communication system and its accounting method
EP0802663A3 (en) * 1996-04-15 1999-06-09 Nec Corporation Communication system and its accounting method
US6009155A (en) * 1996-04-15 1999-12-28 Nec Corporation Communication system and its accounting method
EP0814592A1 (en) * 1996-06-19 1997-12-29 Firma Erika Köchler Radio programmable module for call transfer
WO1997050235A1 (en) * 1996-06-24 1997-12-31 Northern Telecom Limited Telecommunications call centre
US5966660A (en) * 1997-05-28 1999-10-12 Telefonaktiebolaget L/M Ericsson (Publ) User controlled call setup through manual switchboard
WO1998054882A1 (en) * 1997-05-28 1998-12-03 Telefonaktiebolaget Lm Ericsson User controlled call setup through manual switchboard
GB2340340A (en) * 1998-07-31 2000-02-16 Sagem Call back procedure giving the effect of reverse-charge call
FR2781968A1 (en) * 1998-07-31 2000-02-04 Sagem PROCESS FOR ESTABLISHING A COMMUNICATION BETWEEN TWO INFORMATION TRANSMISSION TERMINALS AND A TERMINAL FOR IMPLEMENTING THE PROCESS
GB2340340B (en) * 1998-07-31 2003-08-27 Sagem Process for establishing communication between two information transmission terminals and a terminal for implementing the process
US6804342B1 (en) 1998-07-31 2004-10-12 Sagem S.A. Procedure for establishment of communication between two data transmission terminals and terminal for the embodiment of the procedure
DE19935870B4 (en) * 1998-07-31 2007-02-08 Sagem S.A. Method for establishing a connection between two information transmission terminals and terminal for carrying out the method
WO2000022845A1 (en) * 1998-10-12 2000-04-20 Siemens Aktiengesellschaft Method for establishing a communications link in a public communications network
GB2458142A (en) * 2008-03-06 2009-09-09 Graham Lindsay Call bridging device wherein calls are charged to the telephone account associated with the call bridging device.

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US6035027A (en) 2000-03-07
US5883964A (en) 1999-03-16

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