Mutual information based calculation of the Precoding Matrix Indicator for 3GPP UMTS/LTE

Stefan Schwarz, M. Wrulich, M. Rupp
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引用次数: 79

Abstract

This paper presents an efficient method for calculating the Precoding Matrix Indicator (PMI) at the receiver. The PMI is required for MIMO precoding in the downlink of a 3GPP UMTS/LTE system. Our method is based on maximizing the mutual information between the transmitted and received symbols with respect to the precoding matrix applied at the transmitter. The advantage of this method is that it is independent of the symbol alphabet (4/16/64 QAM) and code rate applied, which are signaled by the channel quality indicator (CQI). Although this paper only focuses on the selection of the optimal PMI, such a procedure eventually allows to decouple both problems (CQI and PMI calculation), thereby reducing complexity. The proposed method also provides means to obtain the number of useful MIMO transmission layers, signaled in form of the Rank indicator (RI), by maximizing mutual information also with respect to this value. The performance of the method is evaluated utilizing an LTE downlink physical-layer simulator.
基于互信息的3GPP UMTS/LTE预编码矩阵指标计算
本文提出了一种计算接收端预编码矩阵指标(PMI)的有效方法。在3GPP UMTS/LTE系统的下行链路中,MIMO预编码需要PMI。我们的方法是基于最大的互信息之间的发送和接收的符号相对于预编码矩阵应用在发射机。这种方法的优点是它独立于符号字母表(4/16/64 QAM)和应用的码率,它们由信道质量指示器(CQI)发出信号。虽然本文只关注最优PMI的选择,但这样的过程最终可以将两个问题(CQI和PMI计算)解耦,从而降低复杂性。所提出的方法还提供了通过最大化互信息来获得有用的MIMO传输层的数量的方法,这些层以Rank指示器(RI)的形式发出信号。利用LTE下行链路物理层模拟器对该方法的性能进行了评估。
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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