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AF two-path half duplex relaying with inter-relay self interference cancellation: diversity analysis and its improvement

机译:中继间自干扰消除的AF两路半双工中继:分集分析及其改进

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摘要

In this paper, we consider a network consisting of one source, one destination and two relays, under a half duplex constraint. We analyze an amplify-and-forward (AF) two-path relaying scheme where one of the relays additionally performs inter-relay interference cancellation. With this interrelay self interference cancellation, we show that degradation in performance can be significantly reduced when inter-relay channel gain increases. By treating the AF two-path relaying as an equivalent MIMO space time code, we derive an upper bound for the pairwise error probability (PEP) of this system. Previous works indicate that only a diversity order of two can be achieved even though physically there are three possibly independent spatial paths to the destination. From our analysis of the PEP, we analytically prove and identify the reason to the limited diversity order of two. We then propose a simple but novel precoding scheme which allows the system to achieve a full diversity order of three while maintaining the spectral efficiency gain of the twopath relaying protocol. A robust precoding design to achieve full diversity order with high coding gain is also proposed.
机译:在本文中,我们考虑在半双工约束下由一个源,一个目的地和两个中继组成的网络。我们分析了一种放大转发(AF)两径中继方案,其中中继之一还执行中继间干扰消除。通过这种中继间自干扰消除,我们表明,当中继间信道增益增加时,性能的降低可以大大降低。通过将AF两路径中继视为等效的MIMO空时码,我们得出了该系统的成对错误概率(PEP)的上限。先前的工作表明,即使物理上存在到目的地的三个可能独立的空间路径,也只能实现2的分集阶数。通过对PEP的分析,我们可以分析性地证明和确定导致有限的两个多样性阶数的原因。然后,我们提出了一种简单而新颖的预编码方案,该方案允许系统在保持双径中继协议的频谱效率增益的同时实现三的全分集阶数。还提出了一种鲁棒的预编码设计,以实现具有高编码增益的全分集阶数。

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