A Low Overhead Feedback Scheme of Channel Covariance Matrix for Massive MIMO Systems

Y. Jang, Dongheon Lee, Sooyong Choi
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Abstract

In this paper, we propose a feedback scheme of a channel covariance matrix with low overhead for massive multiple-input multiple-output systems. The proposed scheme decomposes the channel covariance matrix into the phase and amplitude parts. For the phase part, the element-wise uniform scalar quantization is performed. For the amplitude part, the following feedback information is generated: a bitmap which denotes a sign of difference between adjacent elements, the first value, an increment, and a decrement. To calculate the elements of the amplitude part, starting from the first value, when a bitmap is 1, the increment is added, otherwise the decrement is added. Simulation results show that the feedback overhead of the proposed scheme can be significantly reduced from 1.92% to 48.33% while the performance of mean square error can be maintained with that of the conventional scheme.
大规模MIMO系统中信道协方差矩阵的低开销反馈方案
本文针对大规模多输入多输出系统,提出了一种低开销的信道协方差矩阵反馈方案。该方案将信道协方差矩阵分解为相位部分和幅度部分。对于相位部分,进行逐元均匀标量量化。对于振幅部分,生成以下反馈信息:表示相邻元素之间差异符号的位图,第一个值,增量和减量。为了计算振幅部分的元素,从第一个值开始,当位图为1时,加增量,否则加减量。仿真结果表明,该方案在保持均方误差性能的基础上,将反馈开销从1.92%显著降低到48.33%。
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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