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Distributed transmit-antenna selection in variable-gain relaying systems

机译:可变增益中继系统中的分布式发射天线选择

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Recently, distributed transmit-antenna selection schemes have attracted great interest, since they capture the essential benefits of multi-antenna systems while reducing their cost, complexity, delay, and feedback overhead. In those distributed schemes, the antenna selection is based on local channel-state information, in contrast to their optimal centralized counterparts, which require knowing the channel state of all links. Herein, we design two such distributed schemes for a dual-hop variable-gain amplify-and-forward relaying system with one multi-antenna source, one single-antenna relay, and one single-antenna destination. The two schemes differ in the diversity method used at the destination, namely, selection combining or maximal-ratio combining, and in the selection rule accordingly. In addition to conceiving these new schemes, we analyze their outage performance. Since an exact analysis proves intractable, we tackle the outage probability in terms of lower-bound expressions and their asymptotes at high signal-to-noise ratio. Importantly, the derived bounds turn out to be almost indistinguishable from the true performance, assessed via simulation. Our results reveal that the proposed distributed schemes achieve the same diversity order of their optimal centralized counterparts and perform closely to these, specially when the relay is near the source or destination.
机译:最近,分布式发射天线选择方案引起了人们极大的兴趣,因为它们在降低成本,复杂性,延迟和反馈开销的同时,也抓住了多天线系统的根本优势。在那些分布式方案中,天线选择是基于本地信道状态信息,而不是它们的最佳集中式状态,后者需要知道所有链路的信道状态。在本文中,我们为具有一个多天线源,一个单天线中继和一个单天线目的地的双跳可变增益放大转发中继系统设计了两种分布式方案。两种方案在目的地处使用的分集方法(即选择组合或最大比率组合)以及相应的选择规则方面有所不同。除了构思这些新方案之外,我们还分析了它们的停机性能。由于精确的分析证明是很棘手的,因此我们以较低的表达及其在高信噪比下的渐近性来解决中断的可能性。重要的是,通过模拟评估得出的界限与真实性能几乎没有区别。我们的结果表明,所提出的分布式方案可以实现其最佳集中式对等方的相同分集阶数,并且与它们的性能接近,特别是当中继位于源或目的地附近时。

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