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Energy Efficiency Maximization for SWIPT Enabled Two-Way DF Relaying

机译:SWIPT的双向DF中继的能效最大化

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This letter focuses on the design of an optimal resource allocation scheme to maximize the energy efficiency (EE) in a simultaneous wireless information and power transfer (SWIPT) enabled two-way decode-and-forward (DF) relay network under a non-linear energy harvesting model. In particular, we formulate an optimization problem by jointly optimizing the transmit powers of two source nodes, the power-splitting (PS) ratios of the relay, and the time for the source-relay transmission, under multiple constraints including the transmit power constraints at sources and the minimum rate requirement. Although the formulated problem is non-convex, an iterative algorithm is developed to obtain the optimal resource allocation. Simulation results verify the proposed algorithm and show that the designed resource allocation scheme is superior to other benchmark schemes in terms of EE.
机译:这封信侧重于最佳资源分配方案的设计,以在非线性下,在同时无线信息和电力传输(SWIPT)中最大化能量效率(EE)的能量效率(SWIPT)的双向解码和前进(DF)中继网络。能量收集模型。特别地,我们通过共同优化两个源节点的发射功率,继电器的发积(PS)比的发射功率,以及源 - 中继传输的时间,以及在包括发射功率约束的多个约束下的时间来源和最低利率要求。虽然配制的问题是非凸出的,但是开发了一种迭代算法以获得最佳资源分配。仿真结果验证了所提出的算法,并表明所设计的资源分配方案优于EE方面的其他基准方案。

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