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Performance analysis of distributed space-time coded protocols for wireless multi-hop communications

机译:无线多跳通信中分布式时空编码协议的性能分析

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摘要

In resource limited, large scale sensor networks, cooperative communication over multiple hops offers opportunities to save power: intermediate nodes between source and destination act as cooperative relays. In order to exploit spatial diversity, protocols coupled with space-time coding strategies are proposed herein and analyzed for distributed cooperative communication. In contrast to prior work, multi-hop (versus two-hop) schemes are developed and analyzed for amplify-andforward type of communication protocols. First, the Alamoutibased two-hop scheme proposed by Hua et al and analyzed by Jing & Hassibi is generalized to an arbitrary number of hops L, and a general approximation for the pairwise error probability (PEP) at high SNR is obtained. This expression is used to provide a close approximation to the achievable diversity gain of the scheme. It is further shown that the diversity decreases with L, for large, but finite signal-to-noise ratio (SNR). This motivates the subsequent development of new distributed multihop protocols to mitigate the diversity losses and, hence, yield improved performance. This work presents two such strategies as well as their diversity characterization, which are analyzed for the specific case of L = 3 hops and shown to exhibit improved performance at high SNR. These schemes are based on the structure of the rate-half codes proposed by Tarokh and the square-matrix embeddable codes of Tirkkonen & Hottinen.
机译:在资源有限的大型传感器网络中,多跳上的协作通信提供了节省功耗的机会:源和目标之间的中间节点充当协作中继。为了利用空间分集,本文提出了与空时编码策略耦合的协议,并对其进行了分析以用于分布式协作通信。与先前的工作相反,针对通讯协议的放大转发类型,开发并分析了多跳(相对于两跳)方案。首先,将Hua等人提出并经Jing&Hassibi分析的基于Alamouti的两跳方案推广到任意数量的跳L,并获得高SNR下成对错误概率(PEP)的一般近似。该表达式用于提供该方案可实现的分集增益的近似值。进一步表明,对于大而有限的信噪比(SNR),分集随L减小。这激励了新的分布式多跳协议的后续开发,以减轻多样性的损失,从而提高性能。这项工作提出了两种这样的策略及其分集特性,针对L = 3跳的特定情况进行了分析,并显示了在高SNR时表现出的改进性能。这些方案基于Tarokh提出的速率半编码和Tirkkonen&Hottinen的平方矩阵可嵌入编码的结构。

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