EP1973237A2

Power control for partial channel-state information (CSI) multiple-input, multiple-output (MIMO) systems

Abstract

Techniques for controlling the transmit power for a number of data streams in a wireless multi-channel (e.g., MIMO) communication system. In one method, a number of received symbol streams are initially processed in accordance with a particular (e.g., CCMI, CCMI-SC, MMSE, or MMSE-SC) receiver processing technique to provide a number of detected data streams. The post-detection SNRs of the detected data streams are estimated, and each SNR that exceeds a setpoint is identified. This setpoint may correspond to (1) the SNR needed to achieve the maximum allowed spectral efficiency or (2) the target SNR needed to achieve a specified spectral efficiency. A new (or adjusted) transmit power for each detected data stream associated with a post-detection SNR that exceeds the setpoint is determined and used for the data stream. Different power control schemes are provided for different classes of receiver processing techniques with different characteristics.

EP1973237A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 19 February 2023, 3.6 years ago.

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14 claims: 5 independent, 9 dependent

  1. 1
    A method for determining an amount of transmit power required to achieve a specified spectral efficiency in a wireless multi-channel communication system, comprising:determining a first set of transmission channels selectable for use for data transmission;estimating performance of each of transmission channel in the first set, wherein each transmission channel is associated with a particular spectral efficiency;determining a second set of transmission channels to be used for data transmission, wherein the second set include a minimum number of transmission channels from the first set with an aggregate spectral efficiency that meets the specified spectral efficiency;and determining transmit power for each of the transmission channels in the second set to reduce overall transmit power while achieving the specified spectral efficiency.
  2. 9
    A memory communicatively coupled to a digital signal processing device (DSPD) capable of interpreting digital information to:determine a first set of transmission channels selectable for use for data transmission;estimate performance of each of transmission channel in the first set, wherein each transmission channel is associated with a particular spectral efficiency;determine a second set of transmission channels to be used for data transmission, wherein the second set include a minimum number of transmission channels from the first set with an aggregate spectral efficiency that meets the specified spectral efficiency;and determine transmit power for each of the transmission channels in the second set to reduce overall transmit power while achieving the specified spectral efficiency.
  3. 10
    A computer program product for determining an amount of transmit power required to achieve a specified spectral efficiency in a wireless multi-channel communication system, comprising:code for determining a first set of transmission channels selectable for use for data transmission;code for estimating performance of each of transmission channel in the first set, wherein each transmission channel is associated with a particular spectral efficiency;code for determining a second set of transmission channels to be used for data transmission, wherein the second set include a minimum number of transmission channels from the first set with an aggregate spectral efficiency that meets the specified spectral efficiency;and code for determining transmit power for each of the transmission channels in the second set to reduce overall transmit power while achieving the specified spectral efficiency.
  4. 11
    An integrated circuit in a wireless communication system, comprising:means for determining a first set of transmission channels selectable for use for data transmission;means for estimating performance of each of transmission channel in the first set, wherein each transmission channel is associated with a particular spectral efficiency;means for determining a second set of transmission channels to be used for data transmission, wherein the second set include a minimum number of transmission channels from the first set with an aggregate spectral efficiency that meets the specified spectral efficiency;and means for determining transmit power for each of the transmission channels in the second set to reduce overall transmit power while achieving the specified spectral efficiency.
  5. 12
    A transmitter unit for use in a wireless communication system, comprising:a transmit (TX) data processor operative to code a plurality of data streams based on one or more coding and modulation schemes to provide a plurality of modulation symbol streams, and to scale each modulation symbol stream based on a respective weight corresponding to an amount of transmit power to be used for the corresponding data stream;a plurality of transmitters operative to process the plurality of scaled symbol streams to provide a plurality of modulated signals suitable for transmission over a communication channel;and means for determining a first set of transmission channels selectable for use for data transmission;means for estimating performance of each of transmission channel in the first set, wherein each transmission channel is associated with a particular spectral efficiency;means for determining a second set of transmission channels to be used for data transmission, wherein the second set include a minimum number of transmission channels from the first set with an aggregate spectral efficiency that meets the specified spectral efficiency;and means for determining transmit power for each of the transmission channels in the second set to reduce overall transmit power while achieving the specified spectral efficiency.