Interference Management via User Clustering in Two-Stage Precoder Design

Ayswarya Padmanabhan, Antti Tölli
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引用次数: 7

Abstract

We consider a single cell downlink (DL) massive multiple-input multiple-output (MIMO) set-up with user clustering based on statistical information. The problem is to design a fully digital two-stage beamforming aiming to reduce the complexity involved in the conventional MIMO processing. The fully digital two-stage beamforming consists of a slow varying channel statistics based outer beamformer (OBF) and an inner beamformer (IBF) accounting for fast channel variations. Two different methods are presented to design the OBF matrix, so as to reduce the size of effective channel used for IBF design. A group specific two-stage optimization problem with weighted sum rate maximization (WSRM) objective is formulated to find the IBF for fixed OBF. We begin by proposing centralized IBF design were the optimization is carried out for all sub group jointly with user specific inter-group interference constraints. In order to further reduce the complexity, we also propose a group specific IBF design by fixing the inter group interference to a constant or by ignoring them from the problem altogether. In spite of incurring a small loss in performance, the computational complexity can be saved to a large extent with the group specific processing. Numerical experiments are used to demonstrate the performance of various proposed schemes by comparing the total sum rate of all users and the design complexity.
基于用户聚类的两阶段预编码器干扰管理
我们考虑了一个基于统计信息的用户聚类的单cell下行链路(DL)大规模多输入多输出(MIMO)设置。问题是设计一个全数字的两级波束形成,旨在降低传统MIMO处理的复杂性。全数字两级波束形成由基于慢变信道统计的外波束形成器(OBF)和考虑快速信道变化的内波束形成器(IBF)组成。为了减小IBF设计中有效信道的尺寸,提出了两种不同的OBF矩阵设计方法。针对固定OBF,提出了一种以加权和率最大化为目标的群体两阶段优化问题。我们首先提出了集中式IBF设计,并结合用户特定的组间干扰约束对所有子组进行优化。为了进一步降低复杂性,我们还提出了一种特定于组的IBF设计,将组间干扰固定为一个常数或从问题中完全忽略它们。尽管性能损失很小,但通过分组处理可以在很大程度上节省计算量。数值实验通过比较所有用户的总求和速率和设计复杂度来验证各种方案的性能。
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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