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Throughput Maximization for Decode-and-Forward Relay Channels With Non-Ideal Circuit Power

机译:具有非理想电路功率的解码转发中继通道的吞吐量最大化

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This paper studies the throughput maximization problem for a three-node relay channel with non-ideal circuit power. In particular, the relay operates in a half-duplex manner, and the decode-and-forward (DF) relaying scheme is adopted. Considering the extra power consumption by the circuits, the optimal power allocation to maximize the throughput of the considered system over an infinite time horizon is investigated. First, two special scenarios, i.e., the direct link transmission (only use the direct link to transmit) and the relay assisted transmission (the source and the relay transmit with equal probability) are studied, and the corresponding optimal power allocations are obtained. By transforming two non-convex problems into quasi-concave ones, the closed-form solutions show that the source and the relay transmit with certain probability, which is determined by the average power budgets, circuit power consumptions, and channel gains. Next, based on the above-mentioned results, the optimal power allocation for both the cases with and without direct link is derived, which is shown to be a mixed transmission scheme between the direct link transmission and the relay assisted transmission.
机译:本文研究具有非理想电路功率的三节点中继信道的吞吐量最大化问题。特别地,中继以半双工的方式操作,并且采用解码转发(DF)中继方案。考虑到电路的额外功耗,研究了在无限长的时间范围内最大化所考虑系统的吞吐量的最佳功率分配。首先,研究了两种特殊情况,即直接链路传输(仅使用直接链路进行传输)和中继辅助传输(源和中继以相等的概率进行传输),并获得了相应的最佳功率分配。通过将两个非凸问题转换为准凹问题,封闭形式的解决方案表明源和继电器以一定的概率进行传输,这由平均功率预算,电路功耗和信道增益确定。接下来,基于上述结果,导出针对具有和不具有直接链路的情况的最优功率分配,这被示为是直接链路传输和中继辅助传输之间的混合传输方案。

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