EP0952684A2

A wireless telecommunications method and apparatus that mitigates the effect of multipath fading

Abstract

A wireless telecommunications system is disclosed that mitigates multipath fading through an improvement in transmit diversity. Furthermore, embodiments of the present invention are well-suited for use with all forward channel multiplexing schemes (e.g., frequency-division multiplexing, time-division multiplexing, code-division multiplexing, etc.) and all modulation techniques (e.g., amplitude modulation, frequency modulation, phase modulation, etc.). An illustrative embodiment of the present invention comprises: a signal inverter (613) for inverting and alternately not-inverting a first signal in accordance with a schedule (615) to create a second signal; a first antenna for transmitting the first signal; and a second antenna for transmitting the second signal.

EP0952684A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 13 April 2019, 7.4 years ago.

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26 claims: 10 independent, 16 dependent

  1. 1
    A method comprising:inverting and alternately not-inverting a first signal in accordance with a schedule to create a second signal;transmitting said first signal via a first antenna;and transmitting said second signal via second antenna.
  2. 2
    Apparatus comprising:a signal inverter for inverting and alternately not-inverting a first signal in accordance with a schedule to create a second signal;a first antenna for transmitting said first signal;and a second antenna for transmitting said second signal.
  3. 7
    A method comprising:spreading an information signal to generate a direct-sequence spread-spectrum signal;time-division multiplexing said direct-sequence spread-spectrum signal with a pilot signal to generate a first time-division multiplexed pilot-aided direct-sequence spread-spectrum signal, which is partitioned into a series of time-slots;and inverting and alternately not-inverting said first time-division multiplexed pilot-aided direct-sequence spread-spectrum signal in accordance with a schedule to create a second time-division multiplexed pilot-aided direct-sequence spread-spectrum signal.
  4. 9
    Apparatus comprising:a multiplier for spreading an information signal to generate a direct-sequence spread-spectrum signal;a time-division multiplexor for time-division multiplexing said direct-sequence spread-spectrum signal with a pilot signal to generate a first time-division multiplexed pilot-aided direct-sequence spread-spectrum signal, which is partitioned into a series of time-slots;and a signal-inverter for inverting and alternately not-inverting said first time-division multiplexed pilot-aided direct-sequence spread-spectrum signal in accordance with a schedule to create a second time-division multiplexed pilot-aided direct-sequence spread-spectrum signal.
  5. 12
    A method comprising:receiving a time-division multiplexed pilot signal;time-division demultiplexing said time-division multiplexed pilot signal in accordance with a schedule to create an inverted information-bearing signal, an inverted pilot signal, a non-inverted information-bearing signal, and a non-inverted pilot signal;adjusting said inverted information-bearing signal based on said inverted pilot signal;and adjusting said non-inverted information-bearing signal based on said non-inverted pilot signal.
  6. 13
    Apparatus comprising:a receiver for a time-division multiplexed pilot signal;a demultiplexor for time-division demultiplexing said time-division multiplexed pilot signal in accordance with a schedule to create an inverted information-bearing signal, an inverted pilot signal, a non-inverted information-bearing signal, and a non-inverted pilot signal;a first multiplier for adjusting said inverted information-bearing signal based on said inverted pilot signal;and a second multiplier for adjusting said non-inverted information-bearing signal based on said non-inverted pilot signal.
  7. 17
    A method comprising:code-division demultiplexing an incoming signal to create a time-division multiplexed signal;time-division demultiplexing said time-division multiplexed signal to create an information-bearing signal and a pilot signal, wherein said information-bearing signal comprises inverted information-bearing signals and non-inverted information-bearing signals and wherein said pilot signal comprises inverted pilot signals and non-inverted pilot signals;adjusting said inverted information-bearing signals based on said inverted pilot signals;and adjusting said non-inverted information-bearing signals based on said non-inverted pilot signals.
  8. 18
    Apparatus comprising:a receiver for receiving an incoming signal;a time-division demultiplexor for time-division demultiplexing said time-division multiplexed signal to create an information-bearing signal and a pilot signal, wherein said information-bearing signal comprises inverted information-bearing signals and non-inverted information-bearing signals and wherein said pilot signal comprises inverted pilot signals and non-inverted pilot signals;a multiplier for adjusting said inverted information-bearing signals based on said inverted pilot signals, and for adjusting said non-inverted information-bearing signals based on said non-inverted pilot signals.
  9. 19
    A method comprising:code-division demultiplexing an incoming signal to create a time-division multiplexed signal and a pilot signal, wherein said information-bearing signal comprises inverted information-bearing signals and non-inverted information-bearing signals and wherein said pilot signal comprises inverted pilot signals and non-inverted pilot signals;adjusting said inverted information-bearing signals based on said inverted pilot signals;and adjusting said non-inverted information-bearing signals based on said non-inverted pilot signals.
  10. 23
    Apparatus comprising:a receiver for receiving an incoming signal;a first multiplier for code-division demultiplexing said incoming signal to create an information-bearing signal, wherein said information-bearing signal comprises inverted information-bearing signals and non-inverted information-bearing signals;a second multiplier for code-division demultiplexing said incoming signal to create a pilot signal, wherein said pilot signal comprises inverted pilot signals and non-inverted pilot signals;and a multiplier for adjusting said inverted information-bearing signals based on said inverted pilot signals, and for adjusting said non-inverted information-bearing signals based on said non-inverted pilot signals.