EP0909520A2

Improvements in or relating to a method and apparatus for determining symbol timing in a wireless communications system, also using a reusable control channel, and reducing power

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 30 June 2017, 9.2 years ago.

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  2. Filed
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  5. Today

5 claims: 3 independent, 2 dependent

  1. 1
    Claims of equivalent WO 9800992 A2 CLAIMS:1. A communication system comprising: a network interface suitable for interconnecting a public telephone network with a private telephone system;plural mobile telephones;plural base units, each of said base units interconnecting one or more of said mobile telephones to said network interface, wherein said mobile telephones communicate with said base units via a communication medium using a protocol in which the medium is divided into consecutive frames and said consecutive frames are each divided into an equal number of slots, the improvement comprising using one of said slots as a control slot until all other slots within the frames are being utilized for voice communications and thereafter using said control slot for voice communications so long as all of the other slots within the frame continue being utilized. 2. A system as claimed in claim 1 wherein said protocol uses a time- division-multiple access system. 3. A system as claimed in claim 1 wherein said slot is divided into two portions, one portion reserved for communications from said telephone to said base station and the other portion being reserved for communications from said base station to said telephone. 4. A system as claimed in claim 3 wherein said portion within a slot reserved for communications from the mobile telephone to the base station follows in time said portion reserved for communications from said base station to said mobile telephone. 5. A system as claimed in any one of claims 1 to 4 wherein said mobile telephones determine the unavailability of a base unit from the absence of a control slot. 6. A system as claimed in claim 5 wherein a mobile unit searches for an available base unit based on the presence of a control slot. 7. A system as claimed in claim 6 wherein the presence of a control slot is determined by the presence of predetermined control information being sent from a base unit. 8. A system as claimed in claim 7 wherein said predetermined control information is transmitted periodically by said base unit. 9. A communication system in which plural mobile units communicate simultaneously with a base station using a protocol in which the communication medium is divided into repeating frames, each frame having plural slots, in some ones of which one of said mobile units may communicate application data with said base station, and in which one of said slots is used as a control slot, the improvement comprising the use of the control slot as a slot for communicating application data whenever all of the other slots in a frame are being used for communicating application data. 10. A system as claimed in claim 9 wherein said application data is communicated in a slot using one of a predetermined set of carrier frequencies, the improvement further comprising the use of the control slot as a slot for communicating application data whenever all of the other slots in a frame are being used for communicating data or there are no available carrier frequencies associated with any unused slots for communicating application data. 11. A communication system as claimed in claim 9 wherein said application data comprises data representing voice signals and said protocol includes a time-division-multiple-access protocol. 12. A communication system as claimed in claims 9 or 10 wherein during said application slots the mobile unit transmits data to the base station before the base station transmits data to the mobile unit. 13. A communication system comprising plural base stations communicating with and control plural mobile telephones, a method of determining at the mobile telephones with which base station it is to communicate comprising the steps of: (a) dividing the communication medium into a time series of repeating frames;(b) dividing each of the frames into plural slots;(c) transmitting control information by each of the base stations in a designated one of the slots during each frame;(d) searching at the mobile station for the control information being transmitted by each of the base stations;(e) evaluating a predetermined characteristic of each of the signals having control information;and, (f) selecting the base station with which to communicate on the basis of the predetermined characteristic. 14. A system as claimed in claim 13 wherein said predetermined characteristic is one or more of signal strength, signal to noise ratio, bit error rate and energy content. 15. A system as claimed in claims 13 or 14 wherein voice data may be transmitted during each the non-control slots. 16. A system as claimed in claim 15 wherein the mobile units transmits available application data to the base station before the base station transmits available application data to the mobile unit during the non-control slots. 17. A system as claimed in any one of claims 13 to 16 wherein the predetermined characteristic is evaluated with respect to a predetermined word contained within the control slots. 18. A communication system comprising: a telephone switch which interconnects private telephone lines with a public telephone network;plural base stations which interconnect plural remote units to said private telephone lines, wherein communication between said base stations and said remote units is accomplished using RF communications;said base stations comprise plural antenna;and, each of said antenna at one of said base stations may be physically oriented independently of the others of said antennas at said one base station. 19. A communication system as claimed in claim 18 wherein said base station is housed within a single housing. 20. A communication system as claimed in claim 19 wherein said base unit may be attached to a wall or a ceiling and the antennas adjusted to obtain a desired physical orientation.
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    21. A communication system as claimed in claims 19 or 20 wherein said antenna are pivotally mounted along the side of said housing. 22. A communication system as claimed in any one of claims 18 to 21 wherein said antennas may be physically oriented to transmit a vertically polarized signal regardless of the slope of the surface to which said housing is affixed. 23. A communication system as claimed in any one of claims 18 to 22 wherein the antennas may be independently adjusted in orientation to accommodate variations in typography and structures adjacent said base station. 24. A time-division-multiple-access ("TDMA") communication system which communicates between a base unit and plural remote units through a time series of frames and which divides each frame into plural slots, each of said slots being dynamically assigned for communications associated with a particular remote unit, the improvement comprising dividing each slot into two portions during which communications are received from and made to a determined remote unit. 25. A communication system as claimed in claim 24 wherein the communications within a slot are first received from a remote unit. 26. A communications system as claimed in claim 24 including plural antennas for communicating between the base unit and the remote units wherein one of said antennas is selected to be used for communicating during a slot to said remote unit based at least in part on the signal received from said remote unit during the same slot. 27. A communications system as claimed in any one of claims 24 to 26 wherein said remote unit comprises a battery saving circuit which during some frames reduces power to the communications portions of said remote unit except when needed for communicating during a single slot of a frame. 28. A communications system as claimed in claim 27 wherein said battery saving circuit reduces power for all but a single slot. 29. A telephone system in which plural base stations communicate with plural remote units using RF links and in which said base units provide telephone system coverage over a predetermined geographic area, said base stations comprising RF communication means for communicating with said remote units over a predetermined set of RF frequencies, a method of communicating comprising the steps of:(a) monitoring at each base station each of the predetermined set of RF frequencies to determine which frequencies are in use by remote units within the communications range of said base station;and (b) using one of the frequencies determined not to be in use when a need to establish a new communication with one of said remote units when requested by said remote unit.
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    40. A method for communicating between plural remote devices and a base station, comprising the steps of:(a) assigning to each of plural remote devices an identification number;(b) making the identification number available to the remote device upon power-up;(c) upon powering-up of the remote unit, dividing the identification number by a predetermined modulus number to provide a remainder;(d) transmitting from the base station a series of communication frames, each of said frames including a signal indicating the sequence of the frame within a sequence of superframes, each of said superframes comprising a plurality of frames, the plurality being related to the predetermined modulus number;(e) delaying at the remote unit communicating with the base station until the sequence of the frame within the superframe bears a predetermined relationship with the remainder. 41. A method as claimed in claim 40 wherein the plurality of frames within a superframe exceeds thirty. 42. A method as claimed in claim 40 or 41 wherein each identification number of the plural remote units is unique to one of the remote units within a communication system. 43. A method as claimed in claims 40 to 42 wherein upon a failure of the remote unit to establish communication with a base station, the remote unit uses a slotted aloha protocol to establish communications with the base station. 44. A method as claimed in claims 40 to 43 wherein the identification number is made available to the remote device by a communication from the base station. 45. A method as claimed in any one of claims 40 to 44 wherein the identification number is made available to the remote device by one or more switches on said remote device. 46. A method as claimed in claim 45 wherein the switches comprise one of electromechanical switches, electronic switches and memory devices. 47. A communications system comprising a base station and plural remote units, said base station communicating with said remote units using a time series of data frames, each of said frames comprising plural symbols, plural of said symbols forming a preamble portion of said frame and a second plurality of said symbols forming a data portion of said frame, and wherein said base unit determines the timing of said symbols with reference to the symbols within a particular frame, the improvement comprising using symbols from both the preamble portion and the data portion to derive symbol timing. 48. A method of determining symbol timing in a received RF signal having plural symbols within a communications frame, said frame having a preamble portion and a data portion, comprising the steps of: (a) taking N samples of each of the received symbols;(b) for i= 1 to N, determining within said frame a predetermined characteristic of the symbols evaluated at the nth sample for each symbol, at least some of the symbols not being associated with the preamble portion of the frame;and (c) selecting as the symbol timing the nth set of samples having the extreme total of said determined characteristic. 49. A method as claimed in claim 48 wherein said predetermined characteristic is the energy of the symbol.