接收机结构和时序偏移对MIMO空间复用的影响

A. Das, B. Rao
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引用次数: 1

摘要

通过符号时序相对偏移(MAESTRO)来增强多天线,是最近推出的一种方案,通过在发射天线之间引入子符号时序偏移来提高V-BLAST类多天线系统的性能。本文讨论了接收机结构对性能的影响,并研究了时间偏移参数的最佳选择。Shao等人也介绍了类似的定时偏移V-BLAST方案,其中作者使用零强制(ZF)接收器,并得出结论,该系统仅在小块大小时优于V-BLAST。我们表明,Shao等人提出的零强迫(ZF)接收器存在缺陷,这是他们观察到的一些缺陷的主要原因。推导出了最佳的ZF接收器,并与线性MMSE接收器一起显示出没有这些弱点。研究了最优偏移量问题,推导了2 × 2 MIMO系统的最优偏移量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of receiver structure and timing offset on MIMO spatial multiplexing
Multiple antenna enhancements via symbol timing relative offsets (MAESTRO) was recently introduced as a scheme to improve the performance of a V-BLAST like multi-antenna system by introducing sub-symbol timing offsets between the transmit antennas. In this paper we address the role of receiver structure on performance and investigate the optimal choice of the time offset parameter. A similar timing offset V-BLAST scheme was also introduced by Shao et al., where the authors use a zero-forcing (ZF) receiver and conclude the system outperforms V-BLAST only for small block sizes. We show that the zero-forcing (ZF) receiver suggested by Shao et al. is deficient and is the main reason for some of the drawbacks observed by them. The optimal ZF receiver is derived, and along with the linear MMSE receiver, is shown to exhibit no such weaknesses. The problem of optimal offset is also examined and the optimal offset for a 2 times 2 MIMO system derived.
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