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Distributed relay selection strategy based on physical-layer fairness for amplify-and-forward relaying systems

机译:基于物理层公平性的中继转发分布式中继选择策略

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For relay terminals in wireless communication systems, the difference of the power consumed for relaying signals means unfairness, which may reduce the network lifetime when the system is energy-constrained. Classic opportunistic relay selections always cause unequal power consumption among all relays. In this study, the authors propose a novel distributed relay selection strategy, named the fair opportunistic relay selection (FORS) strategy, for amplify-and-forward (AF) opportunistic cooperative systems. The FORS strategy is designed based on physical-layer fairness that means all available relays cumulatively consume equal power. They use a set of weight coefficients to adjust the channel fading coefficients effectively and then change the selection probabilities for all relays on the basis of proportional fair scheduling. Considering that the `optimal' relay can be selected proactively in quasi-static Rayleigh fading channels based on local channel state information, the overhead of the proposed scheme is small. Then, they analyse the performance of the FORS strategy and provide an exact analytical expression for the outage probability (Pout) and the average symbol error probability. Numerical simulation results validate their analysis. The results show that the FORS strategy approximately achieves the upper bound of physical-layer fairness in the AF relaying system.
机译:对于无线通信系统中的中继终端,中继信号所消耗的功率差异意味着不公平,这在系统受能量限制时可能会缩短网络寿命。经典的机会继电器选择总是会导致所有继电器的功耗不均。在这项研究中,作者提出了一种新颖的分布式中继选择策略,称为公平机会中继选择(FORS)策略,用于放大和转发(AF)机会合作系统。 FORS策略是根据物理层公平性设计的,这意味着所有可用的中继器累计消耗相等的功率。他们使用一组权重系数来有效地调整信道衰落系数,然后在比例公平调度的基础上更改所有中继的选择概率。考虑到可以基于本地信道状态信息在准静态瑞利衰落信道中主动选择“最佳”中继,因此该方案的开销很小。然后,他们分析FORS策略的性能,并为中断概率(Pout)和平均符号错误概率提供精确的解析表达式。数值模拟结果验证了其分析结果。结果表明,在自动对焦中继系统中,FORS策略近似达到了物理层公平性的上限。

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