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Efficient Channel State Information Acquisition in Massive MIMO Systems using Non-Orthogonal Pilots

机译:使用非正交导频的大规模MIMO系统中的高效信道状态信息获取

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The objective of this article is to review and benchmark strategies to acquire channel state information (CSI) in time-division duplex (TDD) Massive MIMO systems. In particular, we consider the use of statistical CSI at the base stations (BSs), together with non-orthogonal pilot sequences. Such techniques can theoretically reduce the amount of spectral resources dedicated to channel sounding, thanks to the increased pilot reuse that they allow. We review their application, and present a holistic evaluation of their practical implementation and limitations, including factors that are often neglected in theoretical works, including covariance estimation and tracking, non-orthogonal pilot sequences, signaling associated with dynamically allocated pilot sequences, realistic channel model (spatial covariance, stationarity), and imperfect statistical CSI. We present a possible design addressing these various problems with reasonable complexity, and benchmark the achieved performance. Our results show that when the cost of CSI acquisition is properly accounted for, the tracking of statistical CSI together with the use of non-orthogonal pilots enables to reach a higher effective spectral efficiency than what can be achieved with orthogonal pilot sequences.
机译:本文的目的是对时分双工(TDD)大规模MIMO系统中获取信道状态信息(CSI)的策略进行回顾和基准测试。特别是,我们考虑在基站(BS)上使用统计CSI,以及非正交导频序列。由于它们允许增加的导频重用,因此这些技术在理论上可以减少专用于信道探测的频谱资源的数量。我们回顾了它们的应用,并对它们的实际实现和局限性进行了全面评估,包括理论工作中经常被忽略的因素,包括协方差估计和跟踪,非正交导频序列,与动态分配的导频序列相关的信令,现实的信道模型(空间协方差,平稳性)和不完善的统计CSI。我们提出了一种可能的设计,以合理的复杂度解决了这些各种问题,并对所达到的性能进行了基准测试。我们的结果表明,如果适当地考虑了CSI的获取成本,则与非正交导频一起使用统计CSI跟踪以及使用非正交导频可以实现比正交导频序列所能达到的更高的有效频谱效率。

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