FIR MIMO信道均衡的非二次判据

Hichem Besbes, S. B. Rayana, G. R. Othman
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引用次数: 0

摘要

在无记忆MIMO信道的情况下,当信道矩阵是病态的,众所周知,与MMSE和ZF均衡器相比,最大似然(ML)均衡器的性能非常明显。在色散信道中,传统的均衡器旨在消除码间干扰,而没有考虑信道矩阵的调节。它试图以某种方式反转信道矩阵,这可能会导致噪声增强和性能下降。利用这一事实,为了克服这一问题,我们在本文中提出了一种联合部分均衡和ML检测方法,其中均衡器是基于一种新的非二次准则构建的。该准则保证了均衡信道矩阵保持其条件;这将由ML检测器处理。仿真结果表明,在信道矩阵是病态的情况下,这种改进是很明显的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A non-quadratic criterion for FIR MIMO channel equalization
In the case of memoryless MIMO channel and when the channel matrix is ill-conditioned, it is well known that performances of the Maximum Likelihood (ML) equalizer are well pronounced, compared to MMSE and ZF equalizers. In dispersive channels the conventional equalizer intends to cancel the inter-symbol interference, and did not take into the account the conditioning of the channel matrix. It intends to inverse the channel matrix somehow, which may cause noise enhancement and performances degradation. Using this fact and in order to overcome this issue, we propose in this paper a joint partial equalization and ML detection approach, where the equalizer is built based on a novel non-quadratic criterion. The proposed criterion ensures that the equalized channel matrix conserves its conditioning; which will be handled by the ML detector. Simulation results show that the improvement is well pronounced in cases where the channel matrix is ill-conditioned.
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