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Joint Optimal Power Allocation and Relay Selection in Full-Duplex Energy Harvesting Relay Networks

机译:全双工能量收集继电器网络中的联合最优功率分配和继电器选择

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In this paper, the optimal power allocation and relay selection problems in full-duplex (FD) relay networks are investigated, where the amplify-and-forward (AF) relays are wireless powered by energy harvesting technology. The entire transmission process is divided into wireless energy harvesting phase and full-duplex information transfer phase, which is termed as the time switching scheme. For wireless full-duplex relay networks, the transmit power of the source node is always same in the two phase. Therefore, the proposed joint optimal power allocation and relay selection strategy can obtain the different transmit power of the source node in two phase and then select the optimal cooperative relay from the relay set, which aims to maximize the information rate under the condition of total power limitation. Using Lagrangian multiplier method, the closed-form expressions of optimal transmit power can be obtained. In addition, two cases depending on the number of antennas used for energy harvesting are considered, which can fully exploit the hardware resources. Simulation results show that the proposed FD scheme has better performances than the existing schemes.
机译:在本文中,研究了全双工(FD)中继网络中的最佳功率分配和中继选择问题,其中放大和前进(AF)继电器由能量收集技术无线供电。整个传输过程被划分为无线能量收集相位和全双工信息传输阶段,其被称为时间切换方案。对于无线全双工继电器网络,源节点的发射功率在两相中始终相同。因此,所提出的关节最优功率分配和继电器选择策略可以在两个相中获得源节点的不同发射功率,然后从继电器集中选择最佳协作继电器,其旨在在总功率的条件下最大化信息速率局限性。使用拉格朗日乘法器方法,可以获得最佳发射功率的闭合表达式。此外,考虑了两个案例,取决于用于能量收集的天线数量,可以充分利用硬件资源。仿真结果表明,所提出的FD方案具有比现有方案更好的表现。

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