EP0811277A1

Joint demodulation using spatial maximum likelihood

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 23 February 2016, 10.6 years ago.

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41 claims: 12 independent, 29 dependent

  1. 1
    Claims of equivalent WO 9626578 A1 I claim:1. A method of communicating between a plurality of spatially distributed mobile radio units and a radio network using the same radio frequency, comprising the steps of: transmitting information symbols simultaneously from said mobile units on said same radio frequency;sampling a radio wave on said same radio frequency at different points in space using a plurality of spatially distributed antennas to produce spatial signal samples;and jointly processing said spatial signal samples using an equalizer adapted to resolve spatial intersymbol interference between said information symbols in order to reproduce said transmitted information symbols.
  2. 11
    A method of communicating between a plurality of mobile radio units and a radio network using a first plurality of radio frequencies, comprising the steps of:transmitting information symbols simultaneously from said mobile units using, for each mobile unit, an associated one of said plurality of radio frequencies;sampling a radio wave on all of said radio frequencies using a multi¬ channel receiver to produce samples along a frequency domain;and jointly processing said frequency-domain samples using an equalizer adapted to resolve frequency-domain intersymbol interference between signals on adjacent ones of said plurality of radio frequencies in order to reproduce said transmitted information symbols.
  3. 12
    A method of communicating between a plurality of spatially distributed mobile radio units and a radio network using the same radio frequency, comprising the steps of:transmitting information symbols simultaneously from said mobile unit on said same radio frequency;sampling a radio wave on said radio frequency at different points in space using a plurality of spatially distributed antennas to produce spatial signal samples;determining for each of said antennas a group of mobile units whos transmissions are significant contributors to that antenna's signal to yield grouping information;and processing said spatial signal samples sequentially in an order dependen on said grouping information in order to reproduce said transmitted information symbols.
  4. 13
    A method of communicating between a plurality of spatially distributed mobile radio units and a radio network using a plurality of radio frequencies, comprising the steps of:transmitting information symbols simultaneously from said mobile units using, for each mobile unit, an associated one of said plurality of radio frequencies;sampling a radio wave on a number of said plurality of radio frequencies using a multi-frequency receiver to produce samples along a frequency domain;determining, for each of said number of frequencies, a group of mobile units whose transmissions are significant contributors to a signal received on that frequency to produce grouping information;and processing said frequency domain samples sequentially in an order dependent on said grouping information in order to reproduce said transmitted information symbols.
  5. 16
    A method of communicating between groups of spatially distributed mobile radio units and a radio network using the same radio frequency for mobiles in the same group, comprising the steps of:grouping mobile units into groups that use the same radio frequency to facilitate demodulation of the symbols transmitted by the mobiles within a group by a spatial equalizer;transmitting information symbols simultaneously from mobile units in the same group using the same radio frequency;sampling a radio wave for each said group frequency at different points in space using a plurality of spatially distributed antennas to produce spatial signal samples;and jointly processing said spatial signal samples using a spatial equalizer for each group adapted to resolve spatial intersymbol interference between mobiles in the group in order to reproduce information symbols transmitted by mobiles in said group.
  6. 20
    A communications system for receiving information symbols transmitted from a number of spatially distributed mobile units using a number of directive antenna beams, comprising:signal correlation means for determining correlations indicating an amplitude and phase of signals transmitted from said mobile units and received using said beams;sorting means for processing said correlations to further determine for each received beam signal a group of mobile units whose transmitted symbols are significant contributors to that beam to provide grouping information;and signal spatial equalizer means for sequentially processing said beam signals in an order determined by said grouping information to resolve said information symbols transmitted by said mobile units.
  7. 26
    A communications system for receiving information symbols transmitted from a plurality of spatially distributed mobile units using a plurality of antenna elements, comprising:combining means for combining signals received using said plurality of antenna elements to form a plurality of beam signals corresponding to signals received from particular directions;signal correlation means for determining correlations indicating an amplitude and phase of signals transmitted from said mobile units and contained in said beam signals;sorting means for processing said correlations to further determine for each formed beam signal a group of mobile units whose transmitted symbols are significant contributors to that beam signal to provide grouping information;and spatial equalizer means for sequentially processing said beam signals in an order determined by said grouping information to resolve said information symbols transmitted by said mobile units.
  8. 27
    A method of communicating between a plurality of spatially distributed mobile radio units and a radio network using the same radio channel frequency, comprising the steps of:transmitting information symbols simultaneously from said mobile units on said same radio frequency;sampling a radio wave on said radio frequency using a plurality of antenna elements to produce antenna signal samples;processing said antenna signal samples using a beam forming network to separate signals received from different directions to obtain direction-corresponding beam signals;and jointly processing said beam signals using a spatial equalizer adapted to resolve intersymbol interference between information symbols received from different mobile units in angularly adjacent beams in order to reproduce said transmitted information symbols.
  9. 28
    A two-way communications method for communicating between a plurality of mobile units and a fixed network, comprising the steps of:transmitting uplink information from at least two of said mobile units to said fixed network using the same radio frequency;using a spatial equalizer in said fixed network to resolve spatial intersymbol interference between said at least two mobile signals to reproduce said transmitted uplink information;transmitting downlink information from said fixed network to said mobile units using a second plurality of transmitters;and jointly processing at at least one mobile unit signals received from at least two of said plurality of transmitters to reproduce a portion of said downlink information intended for said at least one mobile unit.
  10. 29
    A method for receiving a plurality of signals via a plurality of paths in which each path comprises an independent signal mixing process giving rise to an independent mixture of said signals, comprising the steps of:applying said independent mixing processes to hypotheses of said signals to produce predictions of said independent mixtures;comparing each of said predicted mixtures with a mixture received via a corresponding path and generating a mismatch indication;and processing said mismatch indications to decode said signals.
  11. 38
    A method for processing signals received from M mobiles by N antennas comprising the steps of:correlating components of said received signals to generate a correlation spectra;assembling said correlation spectra into a matrix of size N x M;reducing said matrix by selecting a number of significant matrix values for each of said N antennas;and processing said reduced matrix to determine signals generated by said N mobiles.
  12. 41
    A demodulator for a multi-channel receiver comprising:means for receiving signals on each of a plurality of channels;means for making sets of symbol hypotheses for signals received on each of said plurality of adjacent channels;means for predicting said received signals using said sets of symbol hypotheses;means for comparing said predicted signals with respective, actually- received, signals and calculating mismatches therebetween;and means for accumulating said mismatches for each set of hypotheses for each signal and selecting a set having a lowest cumulative mismatch after processing signals received on each of said plurality of adjacent channels.