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Capacity regions of a MAC with a wireless-powered relay-to-destination link under different relay strategies

机译:在不同中继策略下具有无线供电的中继目标链接的Mac的容量区域

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We consider a two-user multiple access channel (MAC) with a wireless-powered relay-to-destination (RD) link, where the relay harvests energy from a radio frequency (RF) signal sent by a dedicated Power Beacon (PB). Each frame is divided into three phases. In the first phase, the relay harvests energy from an RF signal sent by a dedicated PB. The relay then receives information from user nodes in the second phase and forwards it to the destination in the third phase using its harvested energy. We investigate the sum rate maximization problem and characterize the capacity region of such a channel with the relay's maximum transmit power constraint, under both the amplify-and-forward (AF) and decode-and-forward (DF) relay strategies. Optimal solutions are obtained for both cases. It is interesting to find that the shape of the capacity region is still pentagonal with the wireless-powered relay. Finally, simulation results demonstrate the correctness of our analysis.
机译:我们考虑具有带有无线供电的中继到目的地(RD)链路的两个用户多访问通道(MAC),其中继电器从专用电源标信标(PB)发送的射频(RF)信号收集能量。每个帧分为三个阶段。在第一阶段中,继电器从专用PB发送的RF信号收集能量。然后,继电器从第二阶段中的用户节点接收信息,并使用其收获的能量将其转发到第三阶段的目的地。我们调查总和率最大化问题,并在放大和前进(AF)和解码和前进(DF)中继策略中,对中继最大发射功率约束具有继电器最大传输功率约束的这种信道的容量区域。为两种情况获得最佳解决方案。有趣的是发现容量区域的形状仍然与无线动力继电器的五边形。最后,仿真结果证明了我们分析的正确性。

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