WO1994029824A1 - Preselected distance monitoring and locating system - Google Patents

Preselected distance monitoring and locating system Download PDF

Info

Publication number
WO1994029824A1
WO1994029824A1 PCT/US1994/006355 US9406355W WO9429824A1 WO 1994029824 A1 WO1994029824 A1 WO 1994029824A1 US 9406355 W US9406355 W US 9406355W WO 9429824 A1 WO9429824 A1 WO 9429824A1
Authority
WO
WIPO (PCT)
Prior art keywords
base
station
monitoring
transceiver
signal
Prior art date
Application number
PCT/US1994/006355
Other languages
French (fr)
Inventor
Robert Brasse
Glen Sherburne
Original Assignee
Direkt, 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
Application filed by Direkt, Inc. filed Critical Direkt, Inc.
Priority to AU70547/94A priority Critical patent/AU7054794A/en
Publication of WO1994029824A1 publication Critical patent/WO1994029824A1/en

Links

Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/0202Child monitoring systems using a transmitter-receiver system carried by the parent and the child
    • G08B21/0263System arrangements wherein the object is to detect the direction in which child or item is located
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/0202Child monitoring systems using a transmitter-receiver system carried by the parent and the child
    • G08B21/0227System arrangements with a plurality of child units
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/0202Child monitoring systems using a transmitter-receiver system carried by the parent and the child
    • G08B21/0241Data exchange details, e.g. data protocol
    • G08B21/0247System arrangements wherein the alarm criteria uses signal strength
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/0202Child monitoring systems using a transmitter-receiver system carried by the parent and the child
    • G08B21/0288Attachment of child unit to child/article
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S13/00Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
    • G01S13/02Systems using reflection of radio waves, e.g. primary radar systems; Analogous systems
    • G01S13/06Systems determining position data of a target
    • G01S13/08Systems for measuring distance only
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S13/00Systems using the reflection or reradiation of radio waves, e.g. radar systems; Analogous systems using reflection or reradiation of waves whose nature or wavelength is irrelevant or unspecified
    • G01S13/74Systems using reradiation of radio waves, e.g. secondary radar systems; Analogous systems

Definitions

  • the present invention provides a system for monitoring a person, or persons, to determine if they remain within a preselected distance from a base-station and for locating their position should they move or be moved outside the preselected distance from the base-station.
  • Radio transmitter adapted to be worn by the person or mounted in the movable object, such as a vehicle, which is activated by receipt of an emergency signal containing a unique address code for the radio transmitter. Once activated by a signal or automatically after the passage of a period of time, the radio transmitter sends out a homing signal. The homing signal is then tracked by radio direction finding and distance measuring equipment which indicates the
  • Some locating devices contain "patch-through" systems, whereby a mobile transceiver communicates with complex location finding beacons.
  • the beacons process the transmitted signals to determine and, subsequently, to transmit the precise location of the object to the remote base-station.
  • Still other devices utilize a transmitting device, attached to a person confined to a specific location, e.g., a person on probation or house arrest.
  • transmitting device generates signals to a base-station, such as a police station, when the person moves outside the specified location.
  • a base-station such as a police station
  • the communication in these devices is usually one-way, i.e., from the
  • the transmitting device may not receive a signal from the base-station, it may not alert the person on whom it is placed that that person has moved outside the specified location.
  • Another locating device operates by continuously
  • conventional devices for monitoring and locating people or objects present several disadvantages. They do not provide for: continuous monitoring, automatic warning to both an observer, such as a parent, and to the people being observed, such as children, that one or more of the children has moved beyond the preselected distance from a base-station, automatic generation of homing signal or signals if the child or children do not return within the preselected distance within a preselected delay period, automatic indication to the parent that the child or children have remained beyond the preselected distance for longer than the preselected delay period, continuous locating of the child or children based on the detection of homing signals, and automatic resumption of continuous monitoring of the child or children which return within the preselected distance from the base-station.
  • the present invention provides a system for monitoring, children, for example, other persons or objects to determine if they remain within a preselected distance from a base-station, and for locating their position should they move or be moved outside the preselected distance from the base-station.
  • An advantage of the present invention is combining the monitoring and locating functions: to continuously determine whether the children are within or outside of the preselected area; to indicate to both the person using the invention and the children that the children are outside the preselected area during a warning period and for a period greater than the warning period; and to allow the person using the invention to determine the precise location of the children after the children move outside of the preselected area.
  • the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the monitoring or locating functions after the children move within or outside of
  • Figure 1 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the base-station is operating in a monitoring function;
  • Figure 2 is an illustration of a base-station unit of the representative embodiment according to the present invention.
  • Figure 3 is an illustration of a fixed stand for the base-station unit of the representative embodiment according' to the present invention
  • Figure 4 is an illustration of a transceiver unit of the representative embodiment according to the present invention
  • Figure 5 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the transceiver unit is moved to a location outside of the preselected area
  • Figure 6 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention v/hen the base-station is operating in a locating function after the transceiver unit is moved to a location outside of the preselected area.
  • FIG 1 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the base-station is operating in a monitoring function.
  • the monitoring and locating system of the representative embodiment according to the present invention indicated generally at 1, shows a preselected area 10, a base-station unit 12, one or more transceiver units, for example, transceiver units 30A, 30B, 30C, a base-station unit user 11, transceiver unit users 31A, 31B, 31C, e.g., children, interrogation signals 14A, 14B, 14C, and return signals 15A, 15B, 15C.
  • Figure 2 is an enlarged view of the base-station unit 12 shown in Figure 1.
  • Figure 2 shows a custom set button 16, an option button 17, a base-station-receiving
  • transceiver indicators 28A, 28B, 28C, and a location indicator 29 are included in transceiver indicators 28A, 28B, 28C, and a location indicator 29.
  • Figure 3 is an illustration of a fixed stand 21 for the base-station unit 12 of the representative embodiment according to the present invention, and shows the base- station unit 12 and the transceiver units 30A, 30B, 30C docked in the fixed stand 21.
  • Figure 3 shows the custom set button 16, the option button 17, the base-station-receiving component 18, the base-station- transmitting component 19, the base-station antenna 22, the auditory means 50, the transceiver indicators 23A, 23B, 23C, and the location indicator 29.
  • FIG 4 is an illustration of the transceiver unit 30C shown in Figure 1 and shows transceiver-transmitting component 32C, transceiver-receiving component 33C, voice-activated microphone 34C, and one or more dipolar antennas 35A and 35B connected to the transceiver unit 30C.
  • Figure 5 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention 1 when the transceiver unit 30C is moved to a location beyond the preselected distance 10.
  • Figure 5 shows the base-station unit user 11, the base-station unit 12, the transceiver units 30A, 30B, the transceiver unit users 31A, 31B, 31C, the interrogation signal 14A, 14B, 14C, and the return signals 15A, 15B.
  • Figure 6 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention 1 when the base-station unit 12 is operating in a locating function after the expiration of a preselected delay period triggered at the base-station unit 12 when the transceiver unit 30C is moved to a location beyond of the preselected distance 10.
  • Figure 6 shows the base-station unit user 11, the transceiver units 30A, 30B, the transceiver unit users 31A, 31B, 31C, the interrogation signal 14A, 14B, 14C, the return signals 15A, 15B, and the homing signal 15C.
  • a supervisor, babysitter, or parent may wish to ensure that one or more
  • children 31A, 31B, and 31C (as the one or more
  • transceiver units users 31A, 31B, 31C remain within the preselected area 10, such as an area enclosing a backyard or playground.
  • the parent 11 can utilize the basestation unit 12, operating in the monitoring function, to continuously determine whether each of the children 31A, 31B, 31C (wearing or controlling the transceiver units 30A, 30B, 30C) are within the preselected area 10.
  • the base-station unit 12 of the representative embodiment performs the monitoring function and the locating
  • the base-station unit 12 operating in the locating function, sounds an alarm to alert the parent 11.
  • the parent 11 may then utilize the base-station unit 12 to locate the position of each of the children who is outside of the preselected distance 10.
  • the base-station unit 12 can resume the monitoring function and cease the locating function. For example, if the base-station unit 12 is operating in the locating
  • the base-station unit 12 can continues to operate in the locating function for those children.
  • the monitoring and locating functions performed by the base-station unit 12 for each one of the transceiver units 30A, 30B, 30C are
  • the base-station unit 12 can trigger the locating function for the transceiver unit 30C, while remaining in the monitoring function for the other transceiver units 30A and 3OB.
  • the base-station unit 12 is a portable unit. Accordingly, the base-station unit 12 can operate while located in the fixed stand 21, or while removed from the fixed stand 21 and transported by the. base-station unit user 11.
  • the base-station unit 12 is provided with a base-station antenna 22 for transmission of the interrogation signal 14C, and receipt of the return signal 15C and the homing signal 27C.
  • the base-station unit 12 may also be provided with means for selecting the preselected distance 10 from the base station, within which the transceiver unit 30C should remain.
  • the means for selecting the preselected distance 10, in the representative embodiment, includes a switch or the option button 17 which can contain several
  • the base-station unit user 11 can select a predetermined distance defining the area in the ranges of approximately 100, 200 or 300 feet from the base-station unit 12.
  • the present invention 1 also contemplates setting the preselected area by moving the transceiver unit 30C to a location which defines the desired distance from the base station 12 and then activating a switch or the custom set button 16. In this way, the preselected distance 10 can be set to a precise area determined by the base-station unit user 11.
  • the base-station-transmitting component 19 generates and sends the interrogation signal 14C to the transceiver unit 30C.
  • the interrogation signals 14A, 14B, and 14C may be sent at many suitable frequency levels, however, in a preferred embodiment the frequency range of about 49.82 - to about 49.90 MHz is utilized. Additionally, the interrogation signals 14A, 14B, 14C, may contain unique digitized coded inforr.aticn assigned exclusively to the transceiver unit 30C and used to identify the transceiver unit 30C. Also, each one of the transceiver units 30A, 30B, and 30C can have unique digitized coded information for communication with the corresponding interrogation signals 14A, 14B, 14C.
  • the base-station unit user 11 can be alerted to the operation of the base-station unit 12 in the monitoring and locating functions for each of the transceiver units 30A, 30B, and 30C. To indicate operation in the
  • the base-station unit 12 can
  • the base-station unit 12 can deactivate the transceiver unit indicators 28A, 28B, 28C.
  • the base-station unit 12 operating in the locating function, displays the strength of the homing signals
  • the base-station unit 12 when the base-station unit 12 triggers the locating function for the transceiver units 30A, 30B, 30C, the base-station unit 12 can alert .the base-station unit user 11 by deactivating the
  • the present invention 1 may also include an independent locating function display for each one of the transceiver units 30A, 30B, 30C.
  • the components of the base-station unit 12 and the transceiver units 30A, 30B, 30C may be selected from a wide variety of small transceivers, which are FCC
  • the transceiver unit 30C may be contained in a belt buckle or can be mounted on a belt with the use of, for example, a belt engaging hook, a belt clip or an
  • the transceiver unit 30C can be placed within or mounted on some other article of clothing.
  • the transceiver unit 30C is provided with one or more dipolar antennas 35A and 353, for receipt of the
  • the dipolar antennas 35A and 353 can be positioned, for example, in the belt, at one or more locations to facilitate
  • two dipolar antennas 35A and 35B can be placed in the belt for mounting near the hips of the transceiver unit user 31C.
  • the transceiver units 30A, 30B, and 30C may also be provided with a voice activated microphone 34C and means for transmitting the voice signals in which case the base unit 12 is also provided with means for receiving the voice communication and a speaker 50.
  • the transceiver units 30A, 30B, 30C may also be adapted to cease generating the return signal 15A, 15B and 15C if it should become immersed in water, for example, if a child falls into a pool or lake. Thus, the parent 11 is notified of this emergency even if the child remains within preselected distance 10.
  • transceiver unit 30C detects the interrogation signal 14C, which can contain the digitized information
  • the transceiver-transmitting component 32C generates and sends the return signal 15C to the base-station-receiving component 18 in response to the detection of the
  • the return signal 15C may be sent in a Wide range of frequencies, however, in a preferred embodiment the frequency range of about 49.82 to about 49.90 MH 2 is utilized.
  • the return signal 15c may be adapted to contain unique digitized coded information for communication with the corresponding interrogation signal 14C.
  • the transceiver-transmitting component 32C can generate and send the homing signal 27C to the base-station-receiving component 18.
  • the homing signal 27C can, for example, in the representative embodiment, consist of a continuous wave signal at approximately 470 MHz.
  • the homing signal 27C is not unique to each of the
  • the location indicator 29 upon the base-station-receiving component 18 detecting the homing signals 27A, 27B, 27C, does not distinguish between the transceiver units 30A, 30B, 30C, on the location indicator 29.
  • the fixed stand 21 for the base- station unit 12 may contain docking stations for holding the base-station unit 12 and the transceiver units 30A, 30B and 30C.
  • the fixed stand 21 can serve as a
  • both the base-station unit 12 and the transceiver units 30A, 30B, and 30C can be battery operated, using either
  • the base-station unit 12 After the base-station unit 12 is energized and the preselected distance 10 is set, the base-station unit 12 begins operating in the monitoring function for each one of the transceiver units 30A, 30B, 30C. The base-station unit 12 can continue to operate in the monitoring
  • the transceiver unit 30C remains within the preselected area 10 and is
  • the base-station unit 12 generates and sends the interrogation signal 14C to the transceiver-receiving component 33C of transceiver unit 30C which, in turn, receives the interrogation signal 14C.
  • the transceiver-transmitting component 32C on the transceiver unit 30C generates and sends a return signal 15C.
  • the base-station-receiving component 13 then receives the return signal 15C.
  • the communication between the base-station unit 12 and the transceiver unit 30C can continuously proceed as follows under those conditions: the base-station-transmitting component IS sends the interrogation signal 14C, and the detection of the interrogation signal 14C by the
  • transceiver-receiving component 33C which corresponds to the digital component of the interrogation signal 14C, triggers the transceiver-transmitting component 32C to send the return signal 15C to the base-station-receiving component 18.
  • the base-station unit 12 can trigger the locating function after a change in those conditions. More specifically, when both of two situations occur: First, either the transceiver unit 30C is moved outside of the preselected area or the transceiver unit 30C becomes inoperable; and second, the delay period, such as, for example, 16 seconds, which is triggered at the base-station unit 12 as a result of the first situation, expires, the base-station unit 12 can trigger the locating function.
  • the transceiver-receiving component 33C does not detect the interrogation signal 14C because, based on the base-station unit user 11 setting the preselected area 10, the transceiver-receiving component 33C is set to receive the
  • the transceiver-receiving component 33C is unable to detect the interrogation signal 14C sent by the base-station-transmitting component 19, it detects an interruption in the interrogation signal 14C and, as a result, ceases to respond with the return signal 15C.
  • the transceiver-transmitting component 32C can alert the transceiver unit user 31C that the
  • transceiver unit 30C is outside of the preselected area 10, e.g., if the transceiver unit user 31C travels to a location outside of the preselected area 10, the
  • transceiver unit 30C enters the mode in which the
  • transceiver unit 30C warns the transceiver unit user 31C to return to a location within the preselected area 11.
  • the warning may consist of a series of audible tones generated by auditory means 50.
  • the audible signal tones serve as a warning to instruct the transceiver unit user 31C to return to the preselected distance 10 from the base-station 12.
  • the transceiver unit 30C If the transceiver unit user 31C does not return to a location inside the preselected area 10 within the delay period, which is triggered at the transceiver unit 30C, the transceiver unit 30C enters a mode in which the transceiver-transmitting component 32C sends out the homing signal 27C.
  • the delay period can be, in a
  • the transceiver unit 30C will trigger the transceiver-transmitting component 32C to send the homing signal 27C. Additionally, if the transceiver unit 30C malfunctions or is rendered inoperable, the transceiver-transmitting component 32C ceases operation and cannot send the return signal 15C.
  • the. base-station unit 12 can continue to operate in the monitoring function.
  • the base-station unit 12 operates to locate the transceiver unit 30C from which the transceiver- transmitting component 32C generates and sends the homing signal 27C.
  • the range of the base-station unit 12 operating in the locating function may be affected by structures such as, bridges, water and electrical towers, homes, other radio frequency devices being operated in the vicinity, and unusual atmospheric conditions, however under ideal conditions a range of approximately 10-12 miles can be expected.
  • the base-station unit 12 includes direction finding circuitry for operating in the locating function for receiving the homing signal 27C via base-station
  • This circuitry can indicate the direction of the transceiver unit 30C, and, thus, the location of the transceiver unit user 31C.
  • the base-station unit 12 can display the strength of the homing signal 27C received from each of the various directions on the location indicator 29. By indicating to the base-station unit user 11 the direction from which the strength of the homing signal 27C is the strongest, the base-station unit 12 allows the base-station unit user 11 to locate the transceiver unit 30C.
  • the base-station unit 12 triggers the locating function with respect to more than one of the transceiver units 30A, 30B, and 30C, the detection and strength of the homing signals 27A, 27B, and 27C, from any of the transceiver units 30A, 30E, and 30C is
  • the base-station unit 12 when the transceiver unit user 31C travels beyond the preselected distance 11, the base-station unit 12, although operating in the locating function, continues to send out the interrogation signal 14C. Thus, if the transceiver unit 30C is moved to a location within the preselected distance 10 after the base-station unit 12 is operating in the locating function, the transceiver-receiving component 33C continues to detect the
  • the base-station-receiving component 18 detects the return signal 15C and reestablishes the monitoring function for the transceiver unit 30C.
  • the transceiver units 30A, 30B, and 30C can also contain a voice-activated microphone, for example 34C, in the transceiver unit 30C, which in a preferred embodiment transmits, in the 49.82 - 49.90 MHz frequency range.
  • a voice-activated microphone for example 34C
  • the present invention 1 contemplates the use of an adapter for an AC power source. Using this function, it is further contemplated that the present invention 1 may be used, for example, to monitor the transceiver unit user 31C, who may be an infant in a crib, at a location remote from the base-station unit 12.

Abstract

In a system (1) for monitoring, within a preselected distance or location defining the perimeter of a preselected area (10), and locating the position of persons, animals or moving objects (31), a base-station (12) generates an interrogation signal (14) which, when detected by one or more transceiver units (30) triggers the transceiver units to generate a return signal (15). Where any one of the transceiver units (30), upon being located outside the preselected area (10) or upon becoming inoperable, detects an interruption in the interrogation signal (14), the transceiver unit ceases to generate the return signal (15) and, after a delay period, detecting an interruption in the return signal from any one of the transceiver units (30), triggers the delay period of the transceiver units, after which, it triggers locating circuitry to determine the position of each one of the transceiver units which have ceased transmitting the return signal (15).

Description

PRESELECTED DISTANCE MONITORING AND LOCATING SYSTEM
FIELD OF INVENTION
The present invention provides a system for monitoring a person, or persons, to determine if they remain within a preselected distance from a base-station and for locating their position should they move or be moved outside the preselected distance from the base-station.
BACKGROUND OF THE INVENTION
Conventional means for locating persons, animals or moving objects often utilize a radio transmitter adapted to be worn by the person or mounted in the movable object, such as a vehicle, which is activated by receipt of an emergency signal containing a unique address code for the radio transmitter. Once activated by a signal or automatically after the passage of a period of time, the radio transmitter sends out a homing signal. The homing signal is then tracked by radio direction finding and distance measuring equipment which indicates the
transmitter's direction and distance.
Some locating devices contain "patch-through" systems, whereby a mobile transceiver communicates with complex location finding beacons. The beacons process the transmitted signals to determine and, subsequently, to transmit the precise location of the object to the remote base-station.
Still other devices utilize a transmitting device, attached to a person confined to a specific location, e.g., a person on probation or house arrest. The
transmitting device generates signals to a base-station, such as a police station, when the person moves outside the specified location. However, the communication in these devices is usually one-way, i.e., from the
transmitting device to the base-station. Since the transmitting device may not receive a signal from the base-station, it may not alert the person on whom it is placed that that person has moved outside the specified location.
Another locating device operates by continuously
determining the position of an object relative to a predetermined acceptable route between two points and generating an exception report upon the object's movement outside of that route. The exception report is then transmitted to a remote central dispatcher. One
disadvantage of this approach is that there is no
indication to the user of their position outside the acceptable route so that the user may return the object to the acceptable route. Thus, conventional devices for monitoring and locating people or objects present several disadvantages. They do not provide for: continuous monitoring, automatic warning to both an observer, such as a parent, and to the people being observed, such as children, that one or more of the children has moved beyond the preselected distance from a base-station, automatic generation of homing signal or signals if the child or children do not return within the preselected distance within a preselected delay period, automatic indication to the parent that the child or children have remained beyond the preselected distance for longer than the preselected delay period, continuous locating of the child or children based on the detection of homing signals, and automatic resumption of continuous monitoring of the child or children which return within the preselected distance from the base-station.
SUMMARY OF THE INVENTION
The present invention provides a system for monitoring, children, for example, other persons or objects to determine if they remain within a preselected distance from a base-station, and for locating their position should they move or be moved outside the preselected distance from the base-station. An advantage of the present invention is combining the monitoring and locating functions: to continuously determine whether the children are within or outside of the preselected area; to indicate to both the person using the invention and the children that the children are outside the preselected area during a warning period and for a period greater than the warning period; and to allow the person using the invention to determine the precise location of the children after the children move outside of the preselected area.
Another advantage of the present invention is the
automatic resumption of either the monitoring or locating functions after the children move within or outside of the preselected area, respectively. In this way, the present invention automatically reestablishes the
monitoring function after operating in the locating function v/hen the children relocate themselves within the preselected distance.
BRIEF DESCRIPTION OF THE DRAWINGS
Figure 1 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the base-station is operating in a monitoring function;
Figure 2 is an illustration of a base-station unit of the representative embodiment according to the present invention;
Figure 3 is an illustration of a fixed stand for the base-station unit of the representative embodiment according' to the present invention; Figure 4 is an illustration of a transceiver unit of the representative embodiment according to the present invention; Figure 5 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the transceiver unit is moved to a location outside of the preselected area; and
Figure 6 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention v/hen the base-station is operating in a locating function after the transceiver unit is moved to a location outside of the preselected area.
DETAILED DESCRIPTION OF THE INVENTION
Figure 1 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention when the base-station is operating in a monitoring function. The monitoring and locating system of the representative embodiment according to the present invention, indicated generally at 1, shows a preselected area 10, a base-station unit 12, one or more transceiver units, for example, transceiver units 30A, 30B, 30C, a base-station unit user 11, transceiver unit users 31A, 31B, 31C, e.g., children, interrogation signals 14A, 14B, 14C, and return signals 15A, 15B, 15C. Figure 2 is an enlarged view of the base-station unit 12 shown in Figure 1. Figure 2 shows a custom set button 16, an option button 17, a base-station-receiving
component 18, a base-station-transmitting component 19, a base-station antenna 22, an auditory means 50,
transceiver indicators 28A, 28B, 28C, and a location indicator 29.
Figure 3 is an illustration of a fixed stand 21 for the base-station unit 12 of the representative embodiment according to the present invention, and shows the base- station unit 12 and the transceiver units 30A, 30B, 30C docked in the fixed stand 21. In addition, Figure 3 shows the custom set button 16, the option button 17, the base-station-receiving component 18, the base-station- transmitting component 19, the base-station antenna 22, the auditory means 50, the transceiver indicators 23A, 23B, 23C, and the location indicator 29. Figure 4 is an illustration of the transceiver unit 30C shown in Figure 1 and shows transceiver-transmitting component 32C, transceiver-receiving component 33C, voice-activated microphone 34C, and one or more dipolar antennas 35A and 35B connected to the transceiver unit 30C.
Figure 5 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention 1 when the transceiver unit 30C is moved to a location beyond the preselected distance 10. In addition, Figure 5 shows the base-station unit user 11, the base-station unit 12, the transceiver units 30A, 30B, the transceiver unit users 31A, 31B, 31C, the interrogation signal 14A, 14B, 14C, and the return signals 15A, 15B.
Figure 6 is a functional block diagram showing the basic operation of a representative embodiment according to the present invention 1 when the base-station unit 12 is operating in a locating function after the expiration of a preselected delay period triggered at the base-station unit 12 when the transceiver unit 30C is moved to a location beyond of the preselected distance 10. Figure 6 shows the base-station unit user 11, the transceiver units 30A, 30B, the transceiver unit users 31A, 31B, 31C, the interrogation signal 14A, 14B, 14C, the return signals 15A, 15B, and the homing signal 15C.
In the overall operation of the present invention, a supervisor, babysitter, or parent, as the base-station unit user 11, may wish to ensure that one or more
children 31A, 31B, and 31C (as the one or more
transceiver units users 31A, 31B, 31C), remain within the preselected area 10, such as an area enclosing a backyard or playground. The parent 11 can utilize the basestation unit 12, operating in the monitoring function, to continuously determine whether each of the children 31A, 31B, 31C (wearing or controlling the transceiver units 30A, 30B, 30C) are within the preselected area 10. Thus, the base-station unit 12 of the representative embodiment performs the monitoring function and the locating
function for each one of the one or more transceiver units 30A, 30B, 30C.
In the event that one or more children 31A, 31B, 31C travel and remain outside of the preselected distance 10, the base-station unit 12, operating in the locating function, sounds an alarm to alert the parent 11. The parent 11 may then utilize the base-station unit 12 to locate the position of each of the children who is outside of the preselected distance 10.
Moreover, if any of the children 31A, 3IB, 31C should return to the preselected distance 10 at any time, the base-station unit 12 can resume the monitoring function and cease the locating function. For example, if the base-station unit 12 is operating in the locating
function for the transceiver unit 30A, it can cease operating in the locating function and return to the monitoring function when the transceiver unit user 31A moves the transceiver unit 30A within the preselected area 10. In addition, with respect to those children that remain within the preselected distance 10, the base-station unit 12 can continues to operate in the locating function for those children. Thus, the monitoring and locating functions performed by the base-station unit 12 for each one of the transceiver units 30A, 30B, 30C, are
independent of the other transceiver units 30A, 30B, 30C. For example, the base-station unit 12 can trigger the locating function for the transceiver unit 30C, while remaining in the monitoring function for the other transceiver units 30A and 3OB.
As shown in Figure 2, the base-station unit 12 is a portable unit. Accordingly, the base-station unit 12 can operate while located in the fixed stand 21, or while removed from the fixed stand 21 and transported by the. base-station unit user 11. The base-station unit 12 is provided with a base-station antenna 22 for transmission of the interrogation signal 14C, and receipt of the return signal 15C and the homing signal 27C.
The base-station unit 12 may also be provided with means for selecting the preselected distance 10 from the base station, within which the transceiver unit 30C should remain. The means for selecting the preselected distance 10, in the representative embodiment, includes a switch or the option button 17 which can contain several
settings corresponding to several preselected distances defining a distance from the base-station. For example, in the representative embodiment, the base-station unit user 11 can select a predetermined distance defining the area in the ranges of approximately 100, 200 or 300 feet from the base-station unit 12. The present invention 1 also contemplates setting the preselected area by moving the transceiver unit 30C to a location which defines the desired distance from the base station 12 and then activating a switch or the custom set button 16. In this way, the preselected distance 10 can be set to a precise area determined by the base-station unit user 11.
The base-station-transmitting component 19 generates and sends the interrogation signal 14C to the transceiver unit 30C. The interrogation signals 14A, 14B, and 14C, may be sent at many suitable frequency levels, however, in a preferred embodiment the frequency range of about 49.82 - to about 49.90 MHz is utilized. Additionally, the interrogation signals 14A, 14B, 14C, may contain unique digitized coded inforr.aticn assigned exclusively to the transceiver unit 30C and used to identify the transceiver unit 30C. Also, each one of the transceiver units 30A, 30B, and 30C can have unique digitized coded information for communication with the corresponding interrogation signals 14A, 14B, 14C.
The base-station unit user 11 can be alerted to the operation of the base-station unit 12 in the monitoring and locating functions for each of the transceiver units 30A, 30B, and 30C. To indicate operation in the
monitoring function, the base-station unit 12 can
activate the transceiver indicators 28A, 28B, 28C (one for each of the transceiver units 30A, 30B, 30C), located on the base-station unit 12, such as, for example, LEDs. Also, to indicate operation in the locating function, the base-station unit 12 can deactivate the transceiver unit indicators 28A, 28B, 28C.
The base-station unit 12, operating in the locating function, displays the strength of the homing signals
27A, 27B, 27C, generated by transceiver units 30A, 30B, and 30C on the location indicator 29, such as, for example, a set of LEDs. Thus, when the base-station unit 12 triggers the locating function for the transceiver units 30A, 30B, 30C, the base-station unit 12 can alert .the base-station unit user 11 by deactivating the
transceiver unit indicators 28A, 28B, 28C and by
displaying the detection and strength of the homing signals 27A, 27B, 27C, on the location indicator 29. The present invention 1 may also include an independent locating function display for each one of the transceiver units 30A, 30B, 30C.
The components of the base-station unit 12 and the transceiver units 30A, 30B, 30C may be selected from a wide variety of small transceivers, which are FCC
approved as electronic radio frequency devices, and which are well known to those skilled in the art as suitable for this purpose. The transceiver unit 30C, may be contained in a belt buckle or can be mounted on a belt with the use of, for example, a belt engaging hook, a belt clip or an
alternative means such as a small pouch or bag.
Alternatively, the transceiver unit 30C can be placed within or mounted on some other article of clothing.
The transceiver unit 30C is provided with one or more dipolar antennas 35A and 353, for receipt of the
interrogation signal 14C, and transmission of the return signal 15C and the homing signal 27C. The dipolar antennas 35A and 353 can be positioned, for example, in the belt, at one or more locations to facilitate
communication and minimize interference. For example, two dipolar antennas 35A and 35B can be placed in the belt for mounting near the hips of the transceiver unit user 31C.
The transceiver units 30A, 30B, and 30C may also be provided with a voice activated microphone 34C and means for transmitting the voice signals in which case the base unit 12 is also provided with means for receiving the voice communication and a speaker 50. The transceiver units 30A, 30B, 30C may also be adapted to cease generating the return signal 15A, 15B and 15C if it should become immersed in water, for example, if a child falls into a pool or lake. Thus, the parent 11 is notified of this emergency even if the child remains within preselected distance 10.
The transceiver-receiving component 33C of the
transceiver unit 30C detects the interrogation signal 14C, which can contain the digitized information
corresponding to the transceiver unit 30C, sent by the base-station-transmitting component 19.
The transceiver-transmitting component 32C generates and sends the return signal 15C to the base-station-receiving component 18 in response to the detection of the
interrogation signal 14C by the transceiver-receiving component 33C. The return signal 15C may be sent in a Wide range of frequencies, however, in a preferred embodiment the frequency range of about 49.82 to about 49.90 MH2 is utilized. The return signal 15c may be adapted to contain unique digitized coded information for communication with the corresponding interrogation signal 14C.
Alternatively, the transceiver-transmitting component 32C can generate and send the homing signal 27C to the base-station-receiving component 18. The homing signal 27C can, for example, in the representative embodiment, consist of a continuous wave signal at approximately 470 MHz. In addition, in the representative embodiment, the homing signal 27C is not unique to each of the
transceiver units 30A, 30B, 30C. Accordingly, the location indicator 29, upon the base-station-receiving component 18 detecting the homing signals 27A, 27B, 27C, does not distinguish between the transceiver units 30A, 30B, 30C, on the location indicator 29.
As shown in Figure 3, the fixed stand 21 for the base- station unit 12 may contain docking stations for holding the base-station unit 12 and the transceiver units 30A, 30B and 30C. The fixed stand 21 can serve as a
recharging station for both the base-station unit 12 and transceiver units 30A, 30B, 30C. In addition, both the base-station unit 12 and the transceiver units 30A, 30B, and 30C can be battery operated, using either
rechargeable or disposable batteries.
A detailed functional description of the present
invention 1 is set forth below. The description is generally directed to the transceiver unit 30C since the present invention 1 operates in the same manner for each of the one or more transceiver units 30A, 30B, and 30C. After the base-station unit 12 is energized and the preselected distance 10 is set, the base-station unit 12 begins operating in the monitoring function for each one of the transceiver units 30A, 30B, 30C. The base-station unit 12 can continue to operate in the monitoring
function so long as, for example, the transceiver unit 30C remains within the preselected area 10 and is
operable. Under these conditions, the base-station unit 12 generates and sends the interrogation signal 14C to the transceiver-receiving component 33C of transceiver unit 30C which, in turn, receives the interrogation signal 14C. In response, the transceiver-transmitting component 32C on the transceiver unit 30C generates and sends a return signal 15C. The base-station-receiving component 13 then receives the return signal 15C. The communication between the base-station unit 12 and the transceiver unit 30C can continuously proceed as follows under those conditions: the base-station-transmitting component IS sends the interrogation signal 14C, and the detection of the interrogation signal 14C by the
transceiver-receiving component 33C, which corresponds to the digital component of the interrogation signal 14C, triggers the transceiver-transmitting component 32C to send the return signal 15C to the base-station-receiving component 18.
However, the base-station unit 12 can trigger the locating function after a change in those conditions. More specifically, when both of two situations occur: First, either the transceiver unit 30C is moved outside of the preselected area or the transceiver unit 30C becomes inoperable; and second, the delay period, such as, for example, 16 seconds, which is triggered at the base-station unit 12 as a result of the first situation, expires, the base-station unit 12 can trigger the locating function.
Moreover, if the transceiver unit 30C is located outside the preselected area 10, the transceiver-receiving component 33C does not detect the interrogation signal 14C because, based on the base-station unit user 11 setting the preselected area 10, the transceiver-receiving component 33C is set to receive the
interrogation signal 14C only while the transceiver unit 30C remains within the preselected area 10. Since the transceiver-receiving component 33C is unable to detect the interrogation signal 14C sent by the base-station-transmitting component 19, it detects an interruption in the interrogation signal 14C and, as a result, ceases to respond with the return signal 15C.
In addition, the transceiver-transmitting component 32C can alert the transceiver unit user 31C that the
transceiver unit 30C is outside of the preselected area 10, e.g., if the transceiver unit user 31C travels to a location outside of the preselected area 10, the
transceiver unit 30C enters the mode in which the
transceiver unit 30C warns the transceiver unit user 31C to return to a location within the preselected area 11. The warning may consist of a series of audible tones generated by auditory means 50. The audible signal tones serve as a warning to instruct the transceiver unit user 31C to return to the preselected distance 10 from the base-station 12.
If the transceiver unit user 31C does not return to a location inside the preselected area 10 within the delay period, which is triggered at the transceiver unit 30C, the transceiver unit 30C enters a mode in which the transceiver-transmitting component 32C sends out the homing signal 27C. The delay period can be, in a
representative embodiment, approximately 16 seconds. At the end of the delay period, if the transceiver unit user 31C has not returned to a location within the preselected area 10, the transceiver unit 30C will trigger the transceiver-transmitting component 32C to send the homing signal 27C. Additionally, if the transceiver unit 30C malfunctions or is rendered inoperable, the transceiver-transmitting component 32C ceases operation and cannot send the return signal 15C. This may occur, for example, when a child, as the transceiver unit user 31C, falls into a pool, thereby disabling the transceiver unit 30C's electrical hardware, or, as another example, when the batteries of one of the transceiver units 30A, 3OB, 30C expire. In the absence of any of these situations which, in the representative embodiment, cause the transceiver-receiving component 33C to cease sending the return signal 15C, the. base-station unit 12 can continue to operate in the monitoring function.
Once the base-station unit 12 triggers the locating function, the base-station unit 12 operates to locate the transceiver unit 30C from which the transceiver- transmitting component 32C generates and sends the homing signal 27C. The range of the base-station unit 12 operating in the locating function may be affected by structures such as, bridges, water and electrical towers, homes, other radio frequency devices being operated in the vicinity, and unusual atmospheric conditions, however under ideal conditions a range of approximately 10-12 miles can be expected.
The base-station unit 12 includes direction finding circuitry for operating in the locating function for receiving the homing signal 27C via base-station
receiving component 18. This circuitry can indicate the direction of the transceiver unit 30C, and, thus, the location of the transceiver unit user 31C. As the base- station unit user 11 points the base-station unit 12 in various directions, the base-station unit 12 can display the strength of the homing signal 27C received from each of the various directions on the location indicator 29. By indicating to the base-station unit user 11 the direction from which the strength of the homing signal 27C is the strongest, the base-station unit 12 allows the base-station unit user 11 to locate the transceiver unit 30C. In addition, if the base-station unit 12 triggers the locating function with respect to more than one of the transceiver units 30A, 30B, and 30C, the detection and strength of the homing signals 27A, 27B, and 27C, from any of the transceiver units 30A, 30E, and 30C is
displayed on the location indicator 29. when the transceiver unit user 31C travels beyond the preselected distance 11, the base-station unit 12, although operating in the locating function, continues to send out the interrogation signal 14C. Thus, if the transceiver unit 30C is moved to a location within the preselected distance 10 after the base-station unit 12 is operating in the locating function, the transceiver-receiving component 33C continues to detect the
interrogation signal 14C, and the transceiver-transmitting component 32C responds by generating the return signal 15C. The base-station-receiving component 18 then detects the return signal 15C and reestablishes the monitoring function for the transceiver unit 30C.
The transceiver units 30A, 30B, and 30C can also contain a voice-activated microphone, for example 34C, in the transceiver unit 30C, which in a preferred embodiment transmits, in the 49.82 - 49.90 MHz frequency range.
The present invention 1 contemplates the use of an adapter for an AC power source. Using this function, it is further contemplated that the present invention 1 may be used, for example, to monitor the transceiver unit user 31C, who may be an infant in a crib, at a location remote from the base-station unit 12.

Claims

What is claimed is :
1. A monitoring and locating system comprising:
a base station and a remote transceiver,
said base-station provided with means for
generating an interrogation signal for receipt by said remote transceiver at a preselected
interrogation distance from said base station; said base-station provided with means for
detecting the receipt of a homing signal generated by said remote transceiver; said base station provided with means for
detecting the receipt or interruption of a return signal generated by said remote transceiver; said base-station provided with means for locating said homing signal generated by said remote transceiver; said remote transceiver provided with means for detecting said interrogation signal within said preselected interrogation distance from said base- station; said remote transceiver provided with means for generating said return signal in response to said interrogation signal; said remote transceiver provided with means for detecting the interruption of said interrogation signal and for alerting a user of said remote transceiver that said remote transceiver has moved beyond said preselected interrogation distance; and said remote transceiver provided with means for generating a homing signal after said remote transceiver moves beyond said preselected
interrogation distance from said base-station.
2. The monitoring and locating system of claim 1 further comprising means for selecting said preselected distance from said base-station.
3. The monitoring and locating system of claim 1 further comprising means for indicating the receipt of said return signal from said remote transceiver.
4. The monitoring and locating system of claim 1 further comprising means for indicating the interruption of said return signal from said remote transceiver. 5. The monitoring and locating system of claim 1 further comprising means for indicating the receipt of said homing signal from said remote transceiver.
5. The monitoring and locating system of claim 1 wherein said remote transceiver is adapted to cease generating said return signal upon immersion in water.
7. The monitoring and locating system of claim 1 wherein said remote transceiver further comprises a microphone adapted for communicating with said base- station and said base-station further comprises means adapted to receive transmissions from said microphone.
8. The monitoring and locating system of claim 1 wherein said base-station is adapted to wait a
predetermined period of time before activating said means for detecting said homing signal from said remote
transceiver.
9. The monitoring and locating system of claim 1 wherein said remote transceiver is adapted to wait a predetermined period of time before activating said means for generating said homing signal.
10. The monitoring and locating system of claim 1 wherein said interrogation signal operates in the
frequency range of about 49.82 - 49.90 MHz.
11. The monitoring and locating system of claim lwherein said return signal operates in the frequency range of about 49.82 - 49.90 MHz.
12. The monitoring and locating system of claim 1 wherein said homing signal operates in the frequency range of about 470 MKz,
13. The monitoring and locating system of claim 7 v/herein said microphone operates in the frequency range of about 49.32 - 49.90 MHz.
14. The monitoring and locating system of claim 1 further comprising batteries to provide power to the base-station and to the transceiver unit.
15. The monitoring and locating system of claim 14 wherein said batteries are rechargeable.
16. The monitoring and locating system of claim 14 further comprising a fixed stand adapted to charge said rechargeable batteries.
17. A monitoring and locating system comprising: a base station and a plurality of remote
transceivers, said base-station provided with means for generating a plurality of distinct interrogation signals for receipt by said plurality of remote transceivers at a preselected interrogation distance from said base-station each of said plurality of distinct interrogation signals adapted to communicate with one of said plurality of remote transceivers; said base-station provided with means for
detecting and distinguishing between the receipt of a plurality of homing signals; said base-station provided with means for
detecting the receipt or interruption of each of said plurality of distinct return signals
generated by said plurality of remote
transceivers; said base-station provided with means for locating said plurality of homing signals generated by said plurality of said remote transceivers; said plurality of remote transceivers adapted to detect one of said plurality of distinct
interrogation signals within said preselected distance from said base-station; each one of said plurality of remote transceivers provided with means for generating a distinct return signal in response to one of said distinct interrogation signals; each one of said plurality of remote transceivers provided with means for detecting the interruption of said interrogation signals and for alerting the users of said plurality of remote transceivers that one or more of said plurality of remote transceivers has moved beyond said preselected interrogation distance; and each one of said plurality of remote transceivers provided with means for generating a homing signal in response to moving beyond said preselected distance from said base-station.
PCT/US1994/006355 1993-06-10 1994-06-10 Preselected distance monitoring and locating system WO1994029824A1 (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2729028A1 (en) * 1994-12-20 1996-07-05 Huang Dennis Reminder-paging system for two=way communication between master kit and sub kits
GB2333876A (en) * 1998-02-02 1999-08-04 Anthony John Hulbert Mobile range sensitive security device
WO2001086609A1 (en) * 2000-05-09 2001-11-15 Steven Maier Lpd locating perimeter device
EP1191495A2 (en) * 2000-09-25 2002-03-27 Gadget Guard Limited A method and apparatus for security tagging

Families Citing this family (75)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6897780B2 (en) 1993-07-12 2005-05-24 Hill-Rom Services, Inc. Bed status information system for hospital beds
SE504267C2 (en) * 1994-06-01 1996-12-16 Tetra Laval Holdings & Finance Identity and cobstone indicator
US6034622A (en) 1995-08-18 2000-03-07 Robert A. Levine Location monitoring via implanted radio transmitter
US5799618A (en) * 1996-08-12 1998-09-01 Innotek, Inc. Combination confinement system and bark inhibitor
US5742233A (en) * 1997-01-21 1998-04-21 Hoffman Resources, Llc Personal security and tracking system
US6493338B1 (en) * 1997-05-19 2002-12-10 Airbiquity Inc. Multichannel in-band signaling for data communications over digital wireless telecommunications networks
US6690681B1 (en) * 1997-05-19 2004-02-10 Airbiquity Inc. In-band signaling for data communications over digital wireless telecommunications network
US6114957A (en) * 1998-02-19 2000-09-05 Innotek Pet Products, Inc. Pet locator system
US6265974B1 (en) * 1998-06-19 2001-07-24 Lexent Technologies, Inc. Systems and methods for monitoring spatial relationship between mobile objects
US5963131A (en) * 1998-06-19 1999-10-05 Lexent Technologies, Inc. Anti-theft device with alarm screening
US6084517A (en) * 1998-08-12 2000-07-04 Rabanne; Michael C. System for tracking possessions
US6989748B2 (en) * 1998-08-12 2006-01-24 Mrsi International, Inc. Battery with integrated tracking device
US6011471A (en) * 1999-02-03 2000-01-04 Huang; Dennis Alarm system
US7034690B2 (en) * 1999-02-09 2006-04-25 Hill-Rom Services, Inc. Infant monitoring system and method
US8321124B2 (en) 1999-03-31 2012-11-27 C2 Global Technologies, Inc. Security and tracking system
US6606556B2 (en) 1999-03-31 2003-08-12 C2 Global Technologies, Inc. Security and tracking system
US6510380B1 (en) 1999-03-31 2003-01-21 C2 Global Technologies, Inc. Security and tracking system
US6889135B2 (en) 1999-03-31 2005-05-03 C2 Global Technologies, Inc. Security and tracking system
US6539393B1 (en) * 1999-09-30 2003-03-25 Hill-Rom Services, Inc. Portable locator system
US6686881B1 (en) 1999-11-30 2004-02-03 International Business Machines Corporation Wireless identification and tracking using magnetic fields
US6614349B1 (en) * 1999-12-03 2003-09-02 Airbiquity Inc. Facility and method for tracking physical assets
US6268798B1 (en) 2000-07-20 2001-07-31 David L. Dymek Firefighter emergency locator system
US6735477B2 (en) 2001-07-09 2004-05-11 Robert A. Levine Internal monitoring system with detection of food intake
US20030030561A1 (en) * 2001-08-08 2003-02-13 Byron Yafuso Method and apparatus for wireless tracking and communication
WO2003027947A1 (en) * 2001-09-25 2003-04-03 Dmatek Ltd. Multiple broadcasting tag and monitoring systems including the same
US20030070085A1 (en) * 2001-10-10 2003-04-10 Silvester Kelan C. Using a communication protocol to provide security services
WO2003060847A1 (en) * 2002-01-14 2003-07-24 Airbiquity Inc. Facility and method for tracking physical assets
US20040090329A1 (en) * 2002-10-28 2004-05-13 Hitt Dale K. RF based positioning and intrusion detection using a wireless sensor network
MXPA05008287A (en) 2003-02-10 2005-09-20 Nielsen Media Res Inc Methods and apparatus to adaptively gather audience information data.
GB0306898D0 (en) * 2003-03-26 2003-04-30 Bouchard Michel Vehicle proximity alarm system
US7399205B2 (en) 2003-08-21 2008-07-15 Hill-Rom Services, Inc. Plug and receptacle having wired and wireless coupling
US20050211187A1 (en) * 2004-03-12 2005-09-29 Harman Larry L Control station with integrated collar recharging docking station for pet electronics products
US7209071B1 (en) 2004-05-07 2007-04-24 Steele Boring System and method for distance measurement
US20050253694A1 (en) * 2004-05-17 2005-11-17 Kuznarowis Mark E Vehicle mounted pedestrian sensor system
US7259671B2 (en) * 2004-06-21 2007-08-21 Christine Ganley Proximity aware personal alert system
US7081836B2 (en) 2004-07-09 2006-07-25 The Johns Hopkins University Method and apparatus for covertly detecting and reporting a distress condition in a vehicle control cabin
US7319386B2 (en) * 2004-08-02 2008-01-15 Hill-Rom Services, Inc. Configurable system for alerting caregivers
US7852208B2 (en) 2004-08-02 2010-12-14 Hill-Rom Services, Inc. Wireless bed connectivity
US20060061481A1 (en) * 2004-09-23 2006-03-23 Kurple William M Receptacle locator
US7508810B2 (en) 2005-01-31 2009-03-24 Airbiquity Inc. Voice channel control of wireless packet data communications
US7693306B2 (en) * 2005-03-08 2010-04-06 Konami Gaming, Inc. System and method for capturing images from mobile devices for use with patron tracking system
US7330122B2 (en) 2005-08-10 2008-02-12 Remotemdx, Inc. Remote tracking and communication device
US20070072676A1 (en) * 2005-09-29 2007-03-29 Shumeet Baluja Using information from user-video game interactions to target advertisements, such as advertisements to be served in video games for example
US20070120698A1 (en) * 2005-11-29 2007-05-31 Jordan Turk System for monitoring the proximity of personal articles
MX2007015979A (en) 2006-03-31 2009-04-07 Nielsen Media Res Inc Methods, systems, and apparatus for multi-purpose metering.
US7924934B2 (en) 2006-04-07 2011-04-12 Airbiquity, Inc. Time diversity voice channel data communications
US7737841B2 (en) 2006-07-14 2010-06-15 Remotemdx Alarm and alarm management system for remote tracking devices
US8797210B2 (en) 2006-07-14 2014-08-05 Securealert, Inc. Remote tracking device and a system and method for two-way voice communication between the device and a monitoring center
US7936262B2 (en) 2006-07-14 2011-05-03 Securealert, Inc. Remote tracking system with a dedicated monitoring center
US7868740B2 (en) 2007-08-29 2011-01-11 Hill-Rom Services, Inc. Association of support surfaces and beds
US8461968B2 (en) * 2007-08-29 2013-06-11 Hill-Rom Services, Inc. Mattress for a hospital bed for use in a healthcare facility and management of same
US8643486B2 (en) * 2007-10-19 2014-02-04 Tattletale Portable Alarm Systems, Inc. Portable alarm device
US7979095B2 (en) 2007-10-20 2011-07-12 Airbiquity, Inc. Wireless in-band signaling with in-vehicle systems
US8082160B2 (en) 2007-10-26 2011-12-20 Hill-Rom Services, Inc. System and method for collection and communication of data from multiple patient care devices
US8598995B2 (en) * 2008-02-22 2013-12-03 Hill-Rom Services, Inc. Distributed healthcare communication system
US8232876B2 (en) 2008-03-07 2012-07-31 Securealert, Inc. System and method for monitoring individuals using a beacon and intelligent remote tracking device
US7983310B2 (en) 2008-09-15 2011-07-19 Airbiquity Inc. Methods for in-band signaling through enhanced variable-rate codecs
US8594138B2 (en) 2008-09-15 2013-11-26 Airbiquity Inc. Methods for in-band signaling through enhanced variable-rate codecs
AU2010230849B2 (en) * 2009-03-31 2015-10-29 Edith Cowan University Tracking system and method
US8036600B2 (en) 2009-04-27 2011-10-11 Airbiquity, Inc. Using a bluetooth capable mobile phone to access a remote network
US8169324B2 (en) * 2009-05-20 2012-05-01 Kuzniar James System for tracking objects
US8418039B2 (en) 2009-08-03 2013-04-09 Airbiquity Inc. Efficient error correction scheme for data transmission in a wireless in-band signaling system
US8249865B2 (en) 2009-11-23 2012-08-21 Airbiquity Inc. Adaptive data transmission for a digital in-band modem operating over a voice channel
US8779924B2 (en) * 2010-02-19 2014-07-15 Hill-Rom Services, Inc. Nurse call system with additional status board
US8514070B2 (en) 2010-04-07 2013-08-20 Securealert, Inc. Tracking device incorporating enhanced security mounting strap
US8848825B2 (en) 2011-09-22 2014-09-30 Airbiquity Inc. Echo cancellation in wireless inband signaling modem
US9411934B2 (en) 2012-05-08 2016-08-09 Hill-Rom Services, Inc. In-room alarm configuration of nurse call system
US9282366B2 (en) 2012-08-13 2016-03-08 The Nielsen Company (Us), Llc Methods and apparatus to communicate audience measurement information
US9314159B2 (en) 2012-09-24 2016-04-19 Physio-Control, Inc. Patient monitoring device with remote alert
US9007202B1 (en) 2013-02-27 2015-04-14 Neil Michael Rego Human being tracking and monitoring system
US9830424B2 (en) 2013-09-18 2017-11-28 Hill-Rom Services, Inc. Bed/room/patient association systems and methods
US9699499B2 (en) 2014-04-30 2017-07-04 The Nielsen Company (Us), Llc Methods and apparatus to measure exposure to streaming media
US9733356B1 (en) 2016-02-17 2017-08-15 Secure Bubble Ltd Detection of animate presence with an ultrasonic signal
US11123014B2 (en) 2017-03-21 2021-09-21 Stryker Corporation Systems and methods for ambient energy powered physiological parameter monitoring
US11911325B2 (en) 2019-02-26 2024-02-27 Hill-Rom Services, Inc. Bed interface for manual location

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4777478A (en) * 1987-05-06 1988-10-11 Gordon S. Hirsch Apparatus for monitoring persons or the like
US4813025A (en) * 1987-06-12 1989-03-14 David B. Rowland Safety alert and locating system
US4906972A (en) * 1987-04-29 1990-03-06 The Boeing Company Communication system for hazardous areas
US5086290A (en) * 1990-03-08 1992-02-04 Murray Shawn G Mobile perimeter monitoring system
US5115223A (en) * 1990-09-20 1992-05-19 Moody Thomas O Personnel location monitoring system and method
US5218344A (en) * 1991-07-31 1993-06-08 Ricketts James G Method and system for monitoring personnel
US5289163A (en) * 1992-09-16 1994-02-22 Perez Carla D Child position monitoring and locating device

Family Cites Families (30)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1885023A (en) * 1927-03-29 1932-10-25 Otto Scheller System for locating moving bodies
US3357020A (en) * 1966-04-04 1967-12-05 Jr William M Slifter Method and apparatus for locating and visually indicating the position of a vehicle
US3458889A (en) * 1966-04-08 1969-08-05 David Tann Intermittent windshield wiper cleaning system
US3419865A (en) * 1967-05-10 1968-12-31 John P. Chisholm Mobile emergency unit locating system
US3568161A (en) * 1968-09-04 1971-03-02 Elwyn Raymond Knickel Vehicle locator system
US3646580A (en) * 1969-07-18 1972-02-29 Raytheon Co Surface vehicle fleet command and control system
US3680121A (en) * 1970-01-02 1972-07-25 Gen Electric Mobile locator system for metropolitan areas
US3757290A (en) * 1971-03-12 1973-09-04 Sperry Rand Corp Automatic vehicle monitoring system
US3906436A (en) * 1973-02-08 1975-09-16 Sumitomo Electric Industries Detection system for the location of moving objects
US4651156A (en) * 1982-02-08 1987-03-17 Mcgraw-Edison Co. Integrated radio location and communication system
US4596988A (en) * 1983-06-10 1986-06-24 Wanka James T Remote controlled tracking transmitter and tracking support system
US4494119A (en) * 1983-08-04 1985-01-15 122923 Canada Limited Distress radiolocation method and system
FR2561050B1 (en) * 1984-03-07 1986-09-19 Commissariat Energie Atomique METHOD FOR MONITORING VEHICLE MOVEMENTS FROM A CENTRAL STATION
US4593273A (en) * 1984-03-16 1986-06-03 Narcisse Bernadine O Out-of-range personnel monitor and alarm
US4908629A (en) * 1986-03-31 1990-03-13 Lo-Jack Corporation Apparatus for locating and/or tracking stolen or missing vehicles and the like
US4740792A (en) * 1986-08-27 1988-04-26 Hughes Aircraft Company Vehicle location system
US4742357A (en) * 1986-09-17 1988-05-03 Rackley Ernie C Stolen object location system
CA1257657A (en) * 1986-11-20 1989-07-18 Leroy Bradshaw Electronic alarm apparatus
US4812852A (en) * 1987-02-20 1989-03-14 Scientific Development Corporation Locating system and method
US4916455A (en) * 1987-02-20 1990-04-10 Scientific Development Inc. Locating system and method
US4799062A (en) * 1987-04-27 1989-01-17 Axonn Corporation Radio position determination method and apparatus
BR8807655A (en) * 1987-08-10 1990-06-05 Peter James Duffett Smith NAVIGATION AND TRACKING SYSTEM
US4954836A (en) * 1987-09-08 1990-09-04 Susumu Sakuma Follow-up system for moving bodies
KR920005507B1 (en) * 1989-05-16 1992-07-06 삼성전자 주식회사 Vehicel loading equipment of automatic vehicle chasing system
US5003317A (en) * 1989-07-11 1991-03-26 Mets, Inc. Stolen vehicle recovery system
US5021794A (en) * 1989-08-15 1991-06-04 Lawrence Robert A Personal emergency locator system
US5068656A (en) * 1990-12-21 1991-11-26 Rockwell International Corporation System and method for monitoring and reporting out-of-route mileage for long haul trucks
US5159344A (en) * 1991-03-22 1992-10-27 North Atlantic Air, Inc. Aircraft theft detection and location system
US5173710A (en) * 1991-08-15 1992-12-22 Terrapin Corporation Navigation and positioning system and method using uncoordinated beacon signals
US5461365A (en) * 1994-10-27 1995-10-24 Schlager; Dan Multi-hazard alarm system using selectable power-level transmission and localization

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4906972A (en) * 1987-04-29 1990-03-06 The Boeing Company Communication system for hazardous areas
US4777478A (en) * 1987-05-06 1988-10-11 Gordon S. Hirsch Apparatus for monitoring persons or the like
US4813025A (en) * 1987-06-12 1989-03-14 David B. Rowland Safety alert and locating system
US5086290A (en) * 1990-03-08 1992-02-04 Murray Shawn G Mobile perimeter monitoring system
US5115223A (en) * 1990-09-20 1992-05-19 Moody Thomas O Personnel location monitoring system and method
US5218344A (en) * 1991-07-31 1993-06-08 Ricketts James G Method and system for monitoring personnel
US5289163A (en) * 1992-09-16 1994-02-22 Perez Carla D Child position monitoring and locating device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2729028A1 (en) * 1994-12-20 1996-07-05 Huang Dennis Reminder-paging system for two=way communication between master kit and sub kits
GB2333876A (en) * 1998-02-02 1999-08-04 Anthony John Hulbert Mobile range sensitive security device
WO2001086609A1 (en) * 2000-05-09 2001-11-15 Steven Maier Lpd locating perimeter device
EP1191495A2 (en) * 2000-09-25 2002-03-27 Gadget Guard Limited A method and apparatus for security tagging
EP1191495A3 (en) * 2000-09-25 2003-05-28 Gadget Guard Limited A method and apparatus for security tagging

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