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Ergodic capacity and SER performance analysis of amplify-and-forward cognitive relay networks with partial relay selection

机译:具有部分中继选择的放大转发认知中继网络的遍历容量和SER性能分析

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This paper investigates the performance of amplify-and-forward (AF) cognitive relay networks with partial relay selection (PRS) in a spectrum-sharing context. The PRS schemes can be divided into two different types: source-relay PRS and relay-destination PRS, which are respectively called SR-PRS and RD-PRS for short. Different from most of the existing studies which only consider interference power constraint on secondary source and relay nodes, transmit power constraint on secondary relay nodes is further considered in our work. In this condition, we derive the lower bound on symbol error rate and the upper bound on ergodic capacity of the two schemes aforementioned over Rayleigh fading channels, which has never been studied before. According to the analyses, the power constraints and the number of secondary relay nodes are the main factors affecting the system performance. Furthermore, the performances of the two schemes are compared by simulations and the correctness of the analytical results are verified by Monte Carlo simulations.
机译:本文研究了在频谱共享情况下具有部分中继选择(PRS)的放大转发(AF)认知中继网络的性能。 PRS方案可以分为两种不同的类型:源中继PRS和中继目的地PRS,它们分别简称为SR-PRS和RD-PRS。与大多数现有研究仅考虑次要源和中继节点上的干扰功率约束不同,我们的工作中进一步考虑了次要中继节点上的发射功率约束。在这种情况下,我们得出了在瑞利衰落信道上上述两种方案的符号错误率的下限和遍历容量的上限,这是以前从未研究过的。根据分析,功率限制和次级中继节点的数量是影响系统性能的主要因素。此外,通过仿真比较了两种方案的性能,并通过蒙特卡洛仿真验证了分析结果的正确性。

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