EP1656757A2

Weight generation method for multi-antenna communication systems utilizing rf-based and baseband signal weighting and combining based upon minimum bit error rate

Abstract

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Projected expiry passed 14 July 2024, 2.2 years ago.

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89 claims: 10 independent, 79 dependent

  1. 1
    Claims of equivalent WO 2005011178 A2 What is claimed is:1. In a receiver having a plurality of receive antennas disposed to produce a corresponding plurality of received RF signals, each of said plurality of received RF signals being generated in response to a transmitted RF signal received through a channel, a signal weighting and combining method comprising: weighting said plurality of received RF signals in accordance with a corresponding plurality of RF weighting values selected to minimize an output bit error rate of said receiver, thereby forming a plurality of weighted RF signals;and combining ones of said plurality of weighted RF signals in order to form one or more combined RF signals.
  2. 11
    In a multi-antenna transmitter disposed to transmit an RF input signal through a plurality of transmit antennas so as to produce a corresponding plurality of RF output signals, each of said RF output signals being received by a receiver after propagating through a channel, an RF splitting and weighting method comprising:dividing said RF input signal in order to form a plurality of divided RF signals;and weighting said plurality of divided RF signals in accordance with a corresponding plurality of RF weighting values selected to minimize an output bit error rate of said receiver, thereby forming said plurality of RF output signals.
  3. 23
    In a communication system including a transmitter having a set of transmit antennas disposed to transmit a set of spatially-multiplexed RF output signals through a channel, and a receiver having a plurality of receive antennas disposed to generate a corresponding first plurality of spatially-multiplexed received RF signals in response to receipt of said spatially-multiplexed RF output signals, an RF processing method comprising:generating said set of spatially-multiplexed RF output signals by performing a splitting and weighting operation upon plural RF input signals, said splitting and weighting operation utilizing a first set of RF weighting values selected in accordance with one or more output bit error rates of said receiver , and forming a second plurality of spatially-multiplexed received RF signals by performing a weighting and combining operation upon said first plurality of spatially- multiplexed received RF signals, said weighting and combimng operation utilizing a second set of RF weighting values selected in accordance with said one or more output bit error rates.
  4. 38
    In a receiver having a plurality of receive antennas disposed to produce a corresponding plurality of spatially-multiplexed received RF signals in response to receipt through a channel of spatially-multiplexed transmitted RF signal energy, a signal weighting and combining method comprising:weighting each of said plurality of spatially-multiplexed received RF signals utilizing a corresponding set of RF weighting values selected in accordance with one or more output bit error rates of said receiver, thereby forming plural spatially-multiplexed weighted RF signals;and combining ones of said plural spatially-multiplexed weighted RF signals in order to form one or more spatially-multiplexed combined RF signals.
  5. 48
    In a multi-antenna transmitter disposed to transmit a spatially-multiplexed RF input signal through a plurality of transmit antennas so as to produce a corresponding plurality of spatially-multiplexed RF output signals, each of said spatially-multiplexed RF output signals being received by a receiver after propagating through a channel, an RF splitting and weighting method comprising:dividing said spatially-multiplexed RF input signal in order to form a plurality of spatially-multiplexed divided RF signals;and weighting said plurality of spatially-multiplexed divided RF signals utilizing a set of RF weighting values selected in accordance with one or more output bit error rates of said receiver in order to form plural spatially-multiplexed weighted RF signals;and, combining ones of said plural spatially-multiplexed weighted RF signals, thereby forming said plurality of spatially-multiplexed RF output signals.
  6. 58
    In a communication system including a transmitter having a set of transmit antennas disposed to transmit a set of RF output signals through a channel, and a receiver having a plurality of receive antennas disposed to generate a corresponding plurality of received RF signals in response to receipt of said RF output signals, an RF processing method comprising:generating said set of RF output signals by performing a splitting and weighting operation upon an RF input signal, said splitting and weighting operation utilizing a first set of RF weighting values selected to minimize an output bit error rate of said receiver ;and generating one or more received combined RF signals by performing a weighting and combining operation upon said plurality of received RF signals, said weighting and combimng operation utilizing a second set of RF weighting values selected to minimize said output bit error rate.
  7. 73
    In a receiver having at least first and second receive antennas disposed to produce at least first and second received RF signals in response to a transmitted RF signal received through a channel, a signal weighting and combining method comprising:weighting said at least first and second received RF signals respectively in accordance with first and second RF weighting values selected to minimize an output bit error rate of said receiver, thereby forming first and second paired single-weight RF signals;and combining said first and second paired single-weight RF signals in order to form one or more combined RF signals.
  8. 81
    In a multi-antenna transmitter disposed to transmit an RF input signal through first and second transmit antennas so as to produce first and second RF output signals, said first and second RF output signals being received by a receiver after propagating through a channel, an RF splitting and weighting method comprising:dividing said RF input signal in order to form first and second divided RF signals;and weighting said first and second divided RF signals respectively in accordance with first and second RF weighting values selected to minimize an output bit error rate of said receiver, thereby forming said first and second RF output signals.
  9. 82
    In a receiver having a plurality of receive antennas disposed to produce a corresponding plurality of spatially-multiplexed received RF signals in response to receipt through a channel of spatially-multiplexed transmitted RF signal energy, a signal weighting and combining method comprising:weighting first and second of said plurality of spatially-multiplexed received RF signals respectively in accordance with first and second RF weighting values selected in accordance with one or more output bit error rates of said receiver, thereby forming first and second paired single-weight RF signals;weighting third and fourth of said plurality of spatially-multiplexed received RF signals respectively in accordance with third and fourth RF weighting values selected in accordance with one or more output bit error rates of said receiver, thereby forming third and fourth paired single- weight RF signals, combining said first and second paired single-weight RF signals in order to form a first combined signal and combimng said third and fourth paired single-weight RF signals in order to form a second combined signal;and processing said first combined signal using a first RF chain and processing said second combined signal using a second RF chain.
  10. 85
    In a multi-antenna transmitter disposed to transmit a spatially-multiplexed RF input signal through a plurality of transmit antennas so as to produce a corresponding plurality of spatially-multiplexed RF output signals, each of said spatially-multiplexed RF output signals being received by a receiver after propagating through a channel, an RF splitting and weighting method comprising:dividing said spatially-multiplexed RF input signal in order to form a plurality of spatially-multiplexed divided RF signals;weighting first and second of said plurality of spatially-multiplexed divided RF signals using respective first and second RF weighting values in order to form first and second paired single-weight RF signals in communication with first and second of said plurality of transmit antennas, said first and second RF weighting values being selected in accordance with one or more output bit error rates of said receiver;and weighting third and fourth of said plurality of spatially-multiplexed divided RF signals using respective third and fourth RF weighting values in order to form third and fourth paired single-weight RF signals in communication with third and fourth of said plurality of transmit antennas, said third and fourth RF weighting values being selected in accordance with one or more output bit error rates of said receiver.