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Linear precoding via conic optimization for fixed MIMO receivers

IEEE Transactions on Signal Processing · 2005 · Vol. 54(1) · pp. 161–176
Ami WieselYonina C. EldarShlomo Shamai

Abstract

In this paper, the problem of designing linear precoders for fixed multiple-input-multiple-output (MIMO) receivers is considered. Two different design criteria are considered. In the first, the transmitted power is minimized subject to signal-to-interference-plus-noise-ratio (SINR) constraints. In the second, the worst case SINR is maximized subject to a power constraint. It is shown that both problems can be solved using standard conic optimization packages. In addition, conditions are developed for the optimal precoder for both of these problems, and two simple fixed-point iterations are proposed to find the solutions that satisfy these conditions. The relation to the well-known uplink-downlink duality in the context of joint transmit beamforming and power control is also explored. The proposed precoder design is general, and as a special case, it solves the transmit rank-one beamforming problem. Simulation results in a multiuser system show that the resulting precoders can significantly outperform existing linear precoders.

Advanced MIMO Systems OptimizationCooperative Communication and Network CodingFull-Duplex Wireless CommunicationsPrecodingTelecommunications linkBeamformingMIMOMathematical optimizationControl theory (sociology)Optimization problemTransmitter power outputContext (archaeology)Computer science

Funding

  • Tel Aviv University
Citations
969
FWCI
30.47
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57
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References
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IEEE Transactions on Wireless Communications · 2004 · 804 citations
Optimal designs for space-time linear precoders and decoders
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