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Multi-Pair MIMO Two-Way Relaying: A Principal-Angle Perspective

机译:多对MIMO双向中继:<?Pub _newline?>主角视角

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摘要

This paper studies and analyzes a multi-pair MIMO two-way relay (TWR) system from a principal-angle perspective. In this system, users are grouped into pairs and two users in each pair exchange information through a common relay. The transmission scheme consists of two phases. In the uplink phase, the relay’s receive signal space is divided into two subspaces for each pair: in one subspace, the signals of the two users are near-parallel, and physical-layer network coding (PNC) decoding is applied to retrieve network-coded messages; in the other subspace, the two user signals are near-orthogonal, and complete decoding (CD) is applied to retrieve individual user messages. In the downlink phase, the relay’s transmit signal space is split into orthogonal subspaces for each pair, and in each subspace a common message is broadcasted to the two users. Our main contribution is to establish a critical link between the transmission scheme and the concept of principal angle in linear algebra. In particular, principal angle quantizes the degree of orthogonality between the user signals and helps determining how to partition the relay’s receive signal space into PNC decoding subspace and CD decoding subspace. Building on that, we discuss the optimal design of user/relay precoders for both uplink and downlink phases to maximize the asymptotic sum-rate of the proposed scheme at high signal-to-noise ratio (SNR). The analysis and numerical results indicate that our scheme performs close to the cut-set outer bound and significantly outperforms the existing schemes in the literature.
机译:本文从主角角度研究和分析了多对MIMO双向中继(TWR)系统。在该系统中,用户被分为几对,每对中的两个用户通过一个公共中继交换信息。传输方案包括两个阶段。在上行链路阶段,每对中继中继的接收信号空间分为两个子空间:在一个子空间中,两个用户的信号接近平行,并且物理层网络编码(PNC)解码用于检索网络,编码消息;在另一个子空间中,两个用户信号接近正交,并且应用完整解码(CD)来检索单个用户消息。在下行链路阶段,中继器的发送信号空间被分成每对正交的子空间,并且在每个子空间中,公共消息被广播到两个用户。我们的主要贡献是在线性代数中的传输方案和主角概念之间建立关键联系。特别是,主角可以量化用户信号之间的正交度,并有助于确定如何将中继站的接收信号空间划分为PNC解码子空间和CD解码子空间。在此基础上,我们讨论了针对上行链路和下行链路相位的用户/中继预编码器的最佳设计,以在高信噪比(SNR)时最大化所提出方案的渐近总速率。分析和数值结果表明,我们的方案的性能接近切割集的外边界,并且明显优于文献中的现有方案。

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