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Diversity Analysis and Design of Space–Time Multiblock Codes for MIMO Systems Equipped With Linear MMSE Receivers

机译:配备线性MMSE接收机的MIMO系统的时空多块码分集分析和设计

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This paper addresses the problem of designing optimum full-symbol-rate linear space–time block codes (STBC) for a multi-input multi-output (MIMO) communication system with $M$ transmitter and $N geq M$ receiver antennas and a linear minimum mean square error (MMSE) receiver. By analyzing the detection error probability expression for the optimized STBC, it is shown that for QAM signaling, the maximum diversity gain for such a system is $N-M+1$. The minimum probability of error STBC design is then extended to systems in which the transmission spans $L$ independent realizations from a block fading channel model, and a (multiblock) linear MMSE receiver is employed. Necessary and sufficient conditions for the optimality of the code are obtained, and a systematic design method for generating codes that satisfy these conditions is presented. The detection error probability and diversity gain of this optimized linear multiblock transceiver are analyzed. It is proved that the error probability decreases with $L$, and it is shown numerically that the diversity gain increases with $L$. Thus, if the corresponding latency can be accommodated, for sufficiently large $L$ an optimally designed multiblock system with a linear receiver can exploit the temporal diversity provided by the block-fading channel and achieve higher diversity gain than that of any single-block system of the same symbol rate with a maximum likelihood (ML) receiver. The optimized multiblock linear system achieves this diversity at a substantiall-n-ny lower computational cost. In fact, the structure of the optimal codes can be exploited to significantly reduce the cost of the multiblock linear receiver.
机译:本文讨论了为具有$ M $发射器和$ N geq M $接收器天线以及一个$ M $发射器的多输入多输出(MIMO)通信系统设计最佳全符号率线性空时分组码(STBC)的问题。线性最小均方误差(MMSE)接收器。通过分析优化的STBC的检测错误概率表达式,表明对于QAM信令,这种系统的最大分集增益为$ N-M + 1 $。然后将最小错误概率STBC设计扩展到这样的系统,在该系统中,传输跨越来自块衰落信道模型的$ L $独立实现,并采用(多块)线性MMSE接收机。获得了代码最优的充要条件,提出了一种生成满足这些条件的代码的系统设计方法。分析了这种优化的线性多块收发器的检测错误概率和分集增益。证明了误差概率随$ L $而减小,并且数值表明分集增益随$ L $而增加。因此,如果可以容纳相应的等待时间,则对于足够大的$ L $,具有线性接收器的最优设计的多块系统可以利用块衰落信道提供的时间分集,并获得比任何单个块系统更高的分集增益。具有最大似然(ML)接收器的相同符号率。优化的多块线性系统以较低的n-ny-ny的计算成本实现了这种多样性。实际上,可以利用最佳代码的结构来显着降低多块线性接收机的成本。

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