基于MMSE-EDS的多用户多流大规模MIMO系统混合预编码

Zhan Liu, Yueyun Chen, Meijie Yang, Rongling Jian
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引用次数: 4

摘要

混合模拟/数字预编码架构是模拟和数字处理的结合,可以减少射频链的数量,同时实现波束形成和空间复用增益。现有的均方误差(MSE)混合预编码算法可以最小化均方误差之和,但不能保证每个数据流的均方误差最小。针对多用户多流海量多输入多输出(MIMO)系统,提出了一种基于数据流最小均方误差(MMSE-EDS)的混合预编码方法。通过计算每个数据流的最优基带预编码和模拟预编码对,保证每个数据流的均方误差(MSE)最小,从而使所有数据流的均方误差(MSE)之和最小。该预编码器/组合器可以通过拉格朗日算法得到。仿真了混合预编码在频谱效率(SE)和误码率(BER)方面的性能优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Precoding Based on MMSE-EDS for Multi-user Multi-stream Massive MIMO Systems
Hybrid analog/digital precoding architecture is a combination of analog and digital processing that reduces the number of RF chains while enabling beamforming and spatial multiplexing gain. Existing mean squared errors (MSE) hybrid precoding algorithm can minimize the sum of MSE, however, do not guarantee that the MSE of each data stream minimized. In this paper, we propose a hybrid precoding method based on the minimum mean square error of each data stream (MMSE-EDS) for multi-user multi-stream Massive multi-input multi-output (MIMO) system. Through calculating the optimal baseband precoding and analog precoding pairs for each data stream, the proposed hybrid precoding ensures minimization of the MSE of each data stream, thus minimizing the sum of the mean square error (MSE) of all data streams. The proposed precoder/combiner can be easily obtained by Lagrangian algorithm. The performance advantages of our proposed hybrid precoding in spectral efficiency (SE) and bit error rate (BER) have been simulated.
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