MF-based Dimension Reduction Signal Compression for Fronthaul-Constrained Distributed MIMO C-RAN

Fred Wiffen, M. Z. Bocus, A. Doufexi, W. Chin
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引用次数: 2

Abstract

In this work we propose a fronthaul compression scheme for distributed MIMO systems with multi-antenna receivers, in which, prior to signal quantisation, dimension reduction is performed at each receiver by matched filtering the received signal with a subset of the local user channel vectors. By choosing these matched filter vectors based on global channel information, a high proportion of the potential capacity may be captured by a small number of signal components, which can then be compressed efficiently using local signal compression. We outline a greedy algorithm for selecting the matched filtering vectors for each receiver, and a local transform coding approach for quantising them, giving expressions for the resulting system sum and user capacities. We then show that the scheme is easily modified to account for imperfect CSI at the receivers. Numerical results show that with a low signal dimension the scheme is able to operate very close to the cut-set bound in the fronthaul limited regime, and demonstrates significant improvements in rate-capacity trade-off versus local compression at all operating points, particularly at high SNR.
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基于mf的前约束分布式MIMO C-RAN降维信号压缩
在这项工作中,我们提出了一种用于具有多天线接收器的分布式MIMO系统的前传压缩方案,其中,在信号量化之前,通过使用本地用户信道矢量的子集对接收信号进行匹配滤波,在每个接收器上执行降维。通过基于全局信道信息选择这些匹配的滤波向量,可以通过少量信号分量捕获高比例的潜在容量,然后使用局部信号压缩有效地压缩这些潜在容量。我们概述了一种贪婪算法,用于为每个接收器选择匹配的滤波向量,以及一种局部变换编码方法,用于量化它们,给出了结果系统和用户容量的表达式。然后,我们证明该方案很容易修改,以解释接收器的不完美CSI。数值结果表明,在信号维数较低的情况下,该方案能够在前传有限范围内非常接近切集边界,并且在所有工作点,特别是在高信噪比的情况下,与局部压缩相比,在速率-容量权衡方面有显著改善。
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