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Cramer-Rao bound based mean-squared error and throughput analysis of superimposed pilots for semi-blind multiple-input multiple-output wireless channel estimation

机译:基于Cramer-Rao界的均方误差和叠加导频的吞吐量分析,用于半盲多输入多输出无线信道估计

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This work presents a study of the mean-squared error (MSE) and throughput performance of superimposed pilots (SP) for the estimation of a multiple-input multiple-output (MIMO) wireless channel. The Cramer-Rao bound (CRB) is derived for SP based estimation of the MIMO channel matrix. Employing the CRB analysis, it is proved that the asymptotic MSE bound is potentially 3 dB lower than the MSE performance of the existing SP mean based estimation (SPME) schemes. Motivated by this observation, a novel SP semi-blind scheme is presented for MIMO channel estimation. This scheme asymptotically achieves the CRB and hence has a lower MSE of estimation when compared with SPME schemes. We also derive closed form expressions for the optimal source-pilot power allocation in SP by maximizing the post-processing signal-to-noise power ratio at the receiver. In the final part, a new result is presented for the worst-case capacity of a communication channel with correlated information symbols and noise. This framework is employed to quantify the throughput performance of SP and also to demonstrate the bandwidth efficiency of SP compared with that of a conventional pilot based system. Copyright (C) 2012 John Wiley & Sons, Ltd.
机译:这项工作提出了对用于估计多输入多输出(MIMO)无线信道的叠加导频(SP)的均方误差(MSE)和吞吐量性能的研究。推导Cramer-Rao边界(CRB),以用于基于SP的MIMO信道矩阵估计。利用CRB分析,证明了渐近MSE界限可能比现有的基于SP均值的估计(SPME)方案的MSE性能低3 dB。受此观察结果的启发,提出了一种新颖的SP半盲方案,用于MIMO信道估计。与SPME方案相比,该方案渐近地实现了CRB,因此具有较低的估计MSE。通过最大化接收器的后处理信噪功率比,我们还得出了用于SP中最佳源导频功率分配的闭式表达式。在最后一部分中,给出了具有相关信息符号和噪声的通信信道最坏情况容量的新结果。与传统的基于导频的系统相比,该框架可用于量化SP的吞吐量性能,并演示SP的带宽效率。版权所有(C)2012 John Wiley&Sons,Ltd.

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