Robust Interference Management via Linear Precoding and Linear/Non-Linear Equalization

被引:0
作者
Seok-Hwan Park
Ali M. Fouladgar
Tariq Elkourdi
Osvaldo Simeone
Onur Sahin
Shlomo Shamai (Shitz)
机构
[1] Chonbuk National University,The Center for Wireless Communications and Signal Processing Research (CWCSPR) ECE Department
[2] New Jersey Institute of Technology (NJIT),undefined
[3] InterDigital Inc.,undefined
[4] The Department of Electrical Engineering,undefined
[5] Technion,undefined
来源
Journal of Signal Processing Systems | 2016年 / 83卷
关键词
Multi-cell MIMO; Linear precoding; Sum-rate maximization; Robust optimization; Bounded uncertainty; Decision-feedback equalization; ADMM;
D O I
暂无
中图分类号
学科分类号
摘要
This work studies the robust design of linear precoding and linear/ non-linear equalization for multi-cell MIMO systems in the presence of imperfect channel state information (CSI). A worst-case design approach is adopted whereby the CSI error is assumed to lie within spherical sets of known radius. First, the optimal robust design of linear precoders is tackled for a MIMO interference broadcast channel (MIMO-IBC) with general unicast/multicast messages in each cell and operating over multiple time-frequency resources. This problem is formulated as the maximization of the worst-case sum-rate assuming optimal detection at the mobile stations (MSs). Then, symbol-by-symbol non-linear equalization at the MSs is considered. In this case, the problem of jointly optimizing linear precoding and decision-feedback (DF) equalization is investigated for a MIMO interference channel (MIMO-IC) with the goal of minimizing the worst-case sum-mean squared error (MSE). Both problems are addressed by proposing iterative algorithms with descent properties. The algorithms are also shown to be implementable in a distributed fashion on processors that have only local and partial CSI by means of the Alternating Direction Method of Multipliers (ADMM). From numerical results, it is shown that the proposed robust solutions significantly improve over conventional non-robust schemes in terms of sum-rate or symbol error rate. Moreover, it is seen that the proposed joint design of linear precoding and DF equalization outperforms existing separate solutions.
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页码:133 / 149
页数:16
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共 65 条
  • [1] Andrews JG(2014)What will 5G be? IEEE Journal on Selected Areas in Communications 32 1065-1082
  • [2] Buzzi S(2010)Multiuser MISO transmitter optimization for intercell interference mitigation IEEE Transactions on Signal Processing 58 4272-4285
  • [3] Choi W(2012)Weighted sum-rate maximization in wireless networks: A review Foundations and Trends in Networking 6 1-163
  • [4] Hanly SV(2011)A distributed numerical approach to interference alignment and applications to wireless interference networks IEEE Transactions on Information Theory 57 3309-3322
  • [5] Lozano A(2013)Joint base station clustering and beamformer design for partial coordinated transmission in heterogeneous networks IEEE Journal on Selected Areas in Communications 31 226-240
  • [6] Soong ACK(2011)Interference alignment: a new look at signal dimensions in a communication network Foundations and Trends in Communications and Information Theory 7 1-136
  • [7] Zhang JC(2011)Robust linear precoder design for multi-cell downlink transmission IEEE Transactions on Signal Processing 59 235-251
  • [8] Huh H(2013)The sign-definiteness lemma and its applications to robust transceiver optimization for multiuser MIMO systems IEEE Transactions on Signal Processing 61 238-252
  • [9] Papadopoulos HC(2004)A competitive minimax approach to robust estimation of random parameters IEEE Transactions on Signal Processing 52 1931-1946
  • [10] Caire G(2012)Robust multicast beamforming for spectrum sharing-based cognitive radios IEEE Transactions on Signal Processing 60 527-533