Beamforming with Partial Channel Knowledge

S. Shilo, A. Weiss, A. Averbuch
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引用次数: 1

Abstract

Multiple antenna techniques are used to enhance wireless links and therefore have been studied extensively. Many practical systems differ from ideal schemes which have been discussed in the literature. One example is a system that lacks precise channel information at the transmitter. We evaluate analytically the performance of a multiple input multiple output (MIMO) technique that uses partial channel knowledge. Specifically, we analyze a suboptimal M X N scheme employing Eigenbeamforming at the transmitter and MRC at the receiver, assuming only partial channel matrix is known to the transmitter, specifically only P out of N rows of the channel matrix are known. We show that the diversity order of such a scheme is MP+N-P and further show that increasing the value of P by one increases the diversity order by M-1. We also derive the array gain for this scheme. All the results are supported by simulations.
部分信道知识的波束形成
多天线技术用于增强无线链路,因此得到了广泛的研究。许多实际系统不同于文献中讨论的理想方案。一个例子是在发射机缺乏精确的信道信息的系统。我们分析地评估了使用部分信道知识的多输入多输出(MIMO)技术的性能。具体来说,我们分析了一种次优的mxn方案,在发射机处采用本征波束形成,在接收机处采用MRC,假设发射机只知道部分信道矩阵,具体来说,信道矩阵的N行中只有P行是已知的。我们证明了这种格式的分集阶数为MP+N-P,并进一步证明了P的值每增加1,分集阶数增加M-1。我们还推导了该方案的阵列增益。所有结果都得到了仿真结果的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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