EP1595329B1

Improving the efficiency of power amplifiers in devices using transmit beamforming

Abstract

This record has no abstract on file.

EP1595329B1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Expired 13 March 2023, 3.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

22 claims: 5 independent, 17 dependent

  1. 1
    A method for optimizing the efficiency of each of a plurality of power amplifiers (110[1]-110[N]) that amplify corresponding ones of a plurality of radio frequency signals for beamforming transmission by corresponding ones of a plurality of antennas (120[1]-120[N]), the method comprising controlling one or more operating parameters of each of the power amplifiers (110[1]-110[N]) operating at a required level of output power based on values of a plurality of transmit weights applied to corresponding ones of a plurality of baseband transmit signals that, when upconverted, produce the plurality of radio frequency signals.
  2. 6
    A method for amplifying a plurality of radio frequency signals for beamforming transmission produced from a corresponding plurality of baseband transmit signals that are weighted by a corresponding transmit weight, comprising supplying the plurality of radio frequency signals to corresponding ones of a plurality of self-bias boosting (145[1]-145[N]) circuits associated with corresponding ones of the plurality of power amplifiers (110[1]-110[N]), wherein each self-bias boosting circuit (145[1]-145[N]) biases the corresponding power amplifier (110[1]-110[N]) operating at the level of the corresponding radio frequency signal, according to the corresponding transmit weight.
  3. 9
    A radio frequency signal transmission system (100) comprising:a plurality of power amplifiers (110[1]-110[N]) adapted to amplify corresponding ones of a plurality of radio frequency signals for beamforming transmission by corresponding ones of a plurality of antennas (120[1]-120[N]);a plurality of power amplifier bias circuits (130[1]-130[N]), each associated with and connected to a corresponding one of the plurality of power amplifiers (110[1]-110[N]) to bias the corresponding power amplifier operating at a required level of output power according to an output power level for the radio frequency signal, wherein the plurality of radio frequency signals are to be simultaneously transmitted by corresponding ones of a plurality of antennas (120[1]-120[N]) coupled to corresponding ones of the plurality of power amplifiers(110[1]-110[N]), to a destination device;and a processor adapted to generate control signals based on corresponding ones of a plurality of transmit weights configured to be applied to corresponding ones of a plurality of baseband transmit signals from which the plurality of radio frequency signals are produced, wherein the controls signals are supplied to respective ones of the plurality of power amplifier bias circuits (130[1]-130[N]) to adjust at least one operational parameter to optimize the efficiency of each power amplifier (110[1]-110[N]) for an output power level of the corresponding radio frequency signal.
  4. 16
    A processor readable medium encoded with instructions adapted to, when executed by a processor, cause the processor to generate power amplifier control signals based on corresponding ones of a plurality of transmit weights configured to be applied to corresponding ones of a plurality of baseband transmit signals from which a plurality of radio frequency signalsfor beamforming transmission are produced, the plurality of radio frequency signals are to be simultaneously transmitted by corresponding antennas (120[1]-120[N]), wherein the power amplifier control signals adjust at least one operational parameter that optimizes the efficiency of a corresponding power amplifier (120[1]-120[N]) operating at a required output level.
  5. 19
    A radio frequency signal transmission system comprising:a plurality of power amplifiers [110[1]-110[N]) adapted to amplify corresponding ones of a plurality of radio frequency signals forbeamforming transmission simultaneously by corresponding ones of a plurality of antennas coupled thereto;and a plurality of self-bias boosting circuits (145[1]-145[N]) associated with corresponding ones of the plurality of power amplifiers, wherein each self-bias boosting circuit is connected to receive as input a corresponding radio frequency signal and adapted to bias the corresponding power amplifier operating at a level of the corresponding radio frequency signal supplied for amplification, wherein the plurality of radio frequency signals are produced from a corresponding plurality of baseband transmit signals that have been weighted by a plurality of transmit weights.