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The Effect of Receiver Diversity Combining on Optimum Energy Allocation and Energy Efficiency of Cooperative Wireless Transmission Systems

机译:接收机分集组合对协作无线传输系统的最佳能量分配和能效的影响

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This paper considers the problem of how to efficiently allocate transmission energy in a cooperative wireless communication system with one source, one relay, and one destination. The relay assists the source via an orthogonal amplify-and-forward protocol. The channels are assumed to be flat fading and the destination combines the source and relay transmissions using either maximal ratio combining (MRC) or equal gain combining (EGC). We analyze the problem of minimizing average total (source plus relay) transmit energy under a fixed outage probability constraint. We show that the choice of receiver diversity combining technique affects both the optimum energy allocation and the overall energy efficiency of the cooperative communication system. Our results show that the ratio of optimum relay to source transmission energy tends to be greater for EGC than MRC. Our results also show that, while cooperative transmission with MRC is always the most efficient strategy, cooperative transmission with EGC tends to be more energy efficient than direct transmission when the outage probability constraint is small or when the relay experiences an advantaged channel to the destination
机译:本文考虑了在具有一个源,一个中继和一个目的地的协作无线通信系统中如何有效分配传输能量的问题。中继通过正交放大转发协议辅助信号源。假定信道为平坦衰落,并且目的地使用最大比率合并(MRC)或等增益合并(EGC)合并源和中继传输。我们分析了在固定中断概率约束下使平均总(源加中继)传输能量最小化的问题。我们表明,接收机分集组合技术的选择会影响最佳能量分配和协作通信系统的整体能量效率。我们的结果表明,对于EGC,最佳中继与源传输能量之比往往比MRC大。我们的结果还表明,虽然与MRC的协作传输始终是最有效的策略,但当中断概率约束较小或中继站到达目的地的有利信道时,与EGC的协作传输相比直接传输往往具有更高的能源效率。

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