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A novel partial relay selection method for amplify-and-forward relay systems

机译:一种放大转发中继系统的新型局部中继选择方法

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摘要

Although partial relay selection (PRS) for amplify-and-forward relay systems requires only the knowledge of source-relay (S-R) channels, in general, it incurs a significant performance loss. In cooperative systems with all single-antenna nodes, irrespective of the number of relays, the diversity order of PRS is limited to only one. This paper proposes a novel relay selection method for improving the performance of PRS scheme. In particular, as in the conventional PRS scheme, the relay that gives the best first-hop signal-to-noise ratio (SNR) is selected. However, this selection is made from only a subset of relays, for which the corresponding S-R and relay-destination (R-D) links are not in outage. An R-D link is considered to be in outage if its SNR is below the predefined threshold value of the end-to-end SNR plus some adjustable margin. The additional overhead required for implementing the proposed scheme is comparable to that of the conventional PRS method. For conciseness and better exposition of the proposed method, we limit our theoretical analysis to a system with two to three relays. The exact expressions of the end-to-end outage probability are derived and it is shown that full diversity order is achieved. Simulation results verify theoretical analysis and show that the proposed method significantly outperforms the conventional PRS method. Moreover, the results demonstrate that, for properly selected margin, the performance of the proposed method is very close or comparable to the method with full channel state information.
机译:尽管用于放大和转发中继系统的部分中继选择(PRS)仅需要了解源中继(S-R)通道,但通常会导致明显的性能损失。在具有所有单天线节点的协作系统中,与中继的数量无关,PRS的分集顺序仅限于一个。本文提出了一种新的中继选择方法,以提高PRS方案的性能。特别地,如在常规的PRS方案中一样,选择给出最佳的第一跳信噪比(SNR)的继电器。但是,仅从中继的子集进行选择,对于这些子集,相应的S-R和中继目标(R-D)链路不会中断。如果R-D链路的SNR低于端到端SNR的预定义阈值加上一些可调整的余量,则认为该R-D链路已中断。实现所提出的方案所需的额外开销与常规PRS方法的开销相当。为了简明和更好地阐述所提出的方法,我们将理论分析限于具有两个到三个继电器的系统。推导了端到端中断概率的精确表达式,并表明可以实现完全分集的顺序。仿真结果验证了理论分析,表明该方法明显优于传统的PRS方法。而且,结果表明,对于适当选择的余量,所提出的方法的性能与具有完整信道状态信息的方法非常接近或相当。

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