• DocumentCode
    771828
  • Title

    Linear MMSE multiuser receivers: MAI conditional weak convergence and network capacity

  • Author

    Zhang, Junshan ; Chong, Edwin K P

  • Author_Institution
    Dept. of Electr. Eng., Arizona State Univ., Tempe, AZ, USA
  • Volume
    48
  • Issue
    7
  • fYear
    2002
  • fDate
    7/1/2002 12:00:00 AM
  • Firstpage
    2114
  • Lastpage
    2122
  • Abstract
    We explore the performance of minimum mean-square error (MMSE) multiuser receivers in wireless systems where the signatures are modeled as random and take values in complex space. First we study the conditional distribution of the output multiple-access interference (MAI) of the MMSE receiver. By appealing to the notion of conditional weak convergence, we find that the conditional distribution of the output MAI, given the received signatures and received powers, converges in probability to a proper complex Gaussian distribution that does not depend on the signatures. This result indicates that, in a large system, the output interference of the MMSE receiver is approximately Gaussian with high probability, and that systems with MMSE receivers are robust to the randomness of the signatures. Building on the Gaussianity of the output interference, we then take the quality of service (QoS) requirements as meeting the signal-to-interference ratio (SIR) constraints and identify the network capacity of single-class systems with random spreading. The network capacity is expressed uniquely in terms of the SIR requirements and received power distributions. Compared to the network capacity corresponding to the optimal signature allocation, we conclude that at the cost of transmission power, the gap between the network capacity corresponding to optimal signatures and that corresponding to random signatures can be made arbitrarily small. Therefore, from the viewpoint of the network capacity, systems with MMSE receivers are robust to the randomness of signatures
  • Keywords
    Gaussian distribution; channel capacity; code division multiple access; fading channels; least mean squares methods; multiuser channels; quality of service; radio networks; radio receivers; radiofrequency interference; Gaussian output interference; MAI conditional weak convergence; MMSE multiuser receivers; QoS requirements; SIR requirements; bit error probability; complex Gaussian distribution; conditional distribution; decentralized power control; discrete-time synchronous baseband model; fading channel; linear MMSE multiuser receivers; minimum mean-square error; multiple-access interference; network capacity; optimal signature allocation; probability; quality of service; random signatures; random spreading; received power distributions; signal-to-interference ratio; single-class systems; transmission power cost; wireless systems; Convergence; Gaussian distribution; Gaussian processes; Interference constraints; Multiple access interference; Power distribution; Power system modeling; Quality of service; Robustness; Signal processing;
  • fLanguage
    English
  • Journal_Title
    Information Theory, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9448
  • Type

    jour

  • DOI
    10.1109/TIT.2002.1013155
  • Filename
    1013155