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Cooperative communications with relay-selection: when to cooperate and whom to cooperate with?

机译:中继选择的协作通信:何时协作以及与谁协作?

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摘要

In this paper; we propose a new cooperative communication protocol, which achieves higher bandwidth efficiency while guaranteeing the same diversity order as that of the conventional cooperative schemes. The proposed scheme considers relay selection via the available partial channel state information (CSI) at the source and the relays. In particular, we discuss the multi-node decode-and-forward cooperative scenarios, where arbitrary N relays are available. The source determines when it needs to cooperate with one relay only, and which relay to cooperate with in case of cooperation, i.e., "When to cooperate?" and "Whom to cooperate with?". An optimal relay is the one which has the maximum instantaneous scaled harmonic mean functionof its source-relay and relay-destination channel gains. For the symmetric scenario, we derive an approximate expression of the bandwidth efficiency and obtain an upper bound on the symbol error rate (SER) performance. We show that full diversity is guaranteed and that a significant increase of the bandwidth efficiency is achieved. Moreover, we present the tradeoff between the achievable bandwidth efficiency and the corresponding SER. Finally, the obtained analytical results are verified through computer simulations.
机译:本文我们提出了一种新的协作通信协议,该协议在保证与传统协作方案相同的分集顺序的同时,实现了更高的带宽效率。所提出的方案考虑了通过源和中继器处的可用局部信道状态信息(CSI)进行中继器选择。特别是,我们讨论了多节点解码和转发协作方案,其中任意N个中继可用。源确定何时仅需要与一个中继进行协作,以及在协作的情况下与哪个中继进行协作,即“何时进行协作?”。和“与谁合作?”。最佳继电器是其源继电器和继电器目标通道增益具有最大瞬时比例谐波均值函数的继电器。对于对称方案,我们导出带宽效率的近似表达式,并获得符号错误率(SER)性能的上限。我们表明,可以保证完全的分集,并且可以显着提高带宽效率。此外,我们提出了可实现的带宽效率和相应的SER之间的权衡。最后,通过计算机仿真验证了所获得的分析结果。

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