分布式旋转恢复空间多样性

Sheng Yang, J. Belfiore
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引用次数: 15

摘要

在中继网络中,利用空间分集的一种传统方法是在中继中引入分布式时空处理。在我们的工作中,我们证明了即使是简单的时变分布式旋转也可以恢复空间多样性。其主要思想是通过创建人工快衰落信道,将固有的空间分集转换为时间分集。结果表明,该框架从理论角度看易于处理,从实践角度看简单易行。此外,该框架是相当通用的,可以应用于广泛的线性/非线性继电器策略。作为应用,我们首先提出了一种线性中继方案,称为旋转和前向多天线两跳分层网络。结果表明,在一些非平凡的情况下,该方案优于现有方案,实现了分集复用的最优权衡。第二种应用是在单天线多中继信道中基于相同思想的译码转发方案。结果表明,该方法可以在较低的信令复杂度下实现最大的分集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed rotation recovers spatial diversity
In relay networks, a conventional way to exploit spatial diversity is to introduce distributed space-time processing at the relays. In our work, we show that even simple time-varying distributed rotation can recover spatial diversity. The main idea is to convert the inherent spatial diversity to time diversity by creating an artificial fast fading channel. It turns out that the proposed framework is both tractable from the theoretical point of view and simple from the practical point of view. Furthermore, the framework is quite general and can be applied to a wide range of linear/nonlinear relaying strategies. As applications, we first propose a linear relaying scheme called rotate-and-forward for multiple-antenna two-hop layered networks. It is shown that, in some non-trivial setting, this scheme outperforms existing schemes and achieves the optimal diversity-multiplexing tradeoff. The second application is a decode-and-forward scheme based on the same idea in the single-antenna multiple-relay channel. It is shown to achieve the maximum diversity with low signaling complexity.
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