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On the Diversity Order of a General Cooperative Relaying Communication System

机译:通用协作中继通信系统的分集阶数

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摘要

Cooperative communication technology exploiting distributed spatial diversity is a promising solution for the future high data-rate cellular and ad-hoc wireless communications. To characterize the performance of a cooperative network, the cooperative diversity is commonly used. In this paper, we revisit the concept of diversity and look into the essence of cooperative diversity. We analyze the diversity performance of a general cooperative relaying system with multiple branches. Moreover, each branch consists of one or more hops. Unlike in other analyses, the assumptions that each node being only equipped with a single antenna and that all channel characteristics belonging to the same family are NOT required in our study. Using the decode-and-forward (DF) relaying protocol as an illustration, we provide analytical results on the diversity gain and the coding gain. The results also encompass most of the existing results as special cases. We further show the relationship between the diversity order of a branch and those of the constituent links; and the relationship between the diversity order of the network and those of the constituent branches. In particular, we show that for the uncoded DF protocol, the full diversity order can be achieved by using simple hard-decision detection at the destination. The requirement is to set appropriate signal-to-noise-ratio (SNR) thresholds for the multi-hop branches. To improve the bandwidth efficiency, we also randomly select one branch, among those branches satisfying the SNR-threshold requirement, for the transmission. We show that such a scheme accomplishes the full diversity order and produces a good error performance.
机译:利用分布式空间分集的合作通信技术是未来高数据速率蜂窝和自组织无线通信的有希望的解决方案。为了表征协作网络的性能,通常使用协作分集。在本文中,我们将重新审视多样性的概念,并探讨合作多样性的本质。我们分析了具有多个分支的通用协作中继系统的多样性性能。而且,每个分支由一个或多个跃点组成。与其他分析不同,在我们的研究中,不需要每个节点仅配备一个天线并且所有信道特性属于同一系列的假设。以解码转发(DF)中继协议为例,我们提供了分集增益和编码增益的分析结果。结果还包括大多数现有的特殊情况的结果。我们进一步展示了分支的多样性顺序与组成链接的多样性顺序之间的关系。以及网络和组成分支的多样性顺序之间的关系。特别是,我们表明,对于未编码的DF协议,可以通过在目标位置使用简单的硬决策检测来实现完整的分集顺序。要求是为多跳分支设置适当的信噪比(SNR)阈值。为了提高带宽效率,我们还从满足SNR阈值要求的那些分支中随机选择一个分支进行传输。我们证明了这种方案可以实现完整的分集阶数并产生良好的错误性能。

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