Non-Linear Precoding for 5G NR

F. Hasegawa, H. Nishimoto, Nuan Song, M. Enescu, A. Taira, A. Okazaki, A. Okamura
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引用次数: 14

Abstract

Non-linear precoding gained attention recently in 3GPP (the third generation partnership project) as a possible technique to improve the performance of multi-user multiple input multiple output (MIMO). In this paper, research and standardization activities related non-linear precoding for 3GPP are described. Implementation, performance evaluation of nonlinear precoding and analysis of 3GPP specification impact are presented in this paper. Both system and UE throughput evaluation results, conducted at both 5GHz and 30GHz, demonstrate that non-linear precoding yield superior performance compared to linear precoding. In addition, two novel non-linear precoding based transmission schemes which require lower computational complexities than conventional non-linear precoding schemes are proposed. The first scheme separates UEs into linearly precoded and nonlinearly precoded UEs, reducing computational complexities required by non-linear precoding. The second scheme is a precoding scheme which intentionally introduces inter-UE interference through linear precoding and implements nonlinear precoding to remove inter-UE interference; multi-user diversity gain and reduction in computational complexity are obtained simultaneously. Finally, new abstraction performance metrics for the proposed schemes are presented. The simulation results demonstrate that the proposed methods outperform linear precoding techniques and offer a tradeoff between computational complexity and throughput performance.
5G NR非线性预编码
非线性预编码作为一种可能改善多用户多输入多输出(MIMO)性能的技术,最近在3GPP(第三代合作伙伴计划)中受到了关注。本文介绍了3GPP非线性预编码的相关研究和标准化活动。本文介绍了非线性预编码的实现、性能评估以及对3GPP规范影响的分析。在5GHz和30GHz下进行的系统和UE吞吐量评估结果表明,与线性预编码相比,非线性预编码具有更好的性能。此外,还提出了两种新的基于非线性预编码的传输方案,其计算复杂度比传统的非线性预编码方案要低。第一种方案将ue分为线性预编码和非线性预编码,降低了非线性预编码所需的计算复杂度。第二种方案是通过线性预编码有意引入ue间干扰并实现非线性预编码以消除ue间干扰的预编码方案;同时获得了多用户分集增益和计算复杂度的降低。最后,针对所提方案提出了新的抽象性能指标。仿真结果表明,所提出的方法优于线性预编码技术,并在计算复杂度和吞吐量性能之间进行了权衡。
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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