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Energy-efficient resource allocation for SWIPT in multiple access channels

机译:多接入通道中SWIPT的节能资源分配

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In this paper, we study optimal resource allocation strategies for simultaneous information and power transfer (SWIPT) focusing on the system energy efficiency. We consider two-user multiple access channels in which energy harvesting (EH) and information decoding (ID) nodes are spatially separated. We formulate optimization problems that maximize system energy efficiency while taking harvested energy constraints into account. These are concave-linear fractional problems, and hence Karush-Kuhn-Tucker (KKT) conditions are necessary and sufficient to obtain globally optimal solution. Solving these optimization problems, we provide analytical expressions for optimal transmit power allocation among the source nodes, and identify the corresponding energy efficiency. We confirm the theoretical analysis via numerical results. Furthermore, we also characterize the effect of circuit power consumption on the system's efficiency as the harvested energy demand varies.
机译:在本文中,我们研究了同时进行信息和功率传输(SWIPT)的最佳资源分配策略,重点是系统能效。我们考虑了两个用户的多路访问通道,其中能量收集(EH)和信息解码(ID)节点在空间上是分开的。我们制定优化问题,以最大程度地提高系统能效,同时考虑收获的能源约束。这些是凹线性分数问题,因此,Karush-Kuhn-Tucker(KKT)条件对于获得全局最优解是必要且足够的。为解决这些优化问题,我们提供了用于在源节点之间分配最佳发射功率的解析表达式,并确定了相应的能效。我们通过数值结果证实了理论分析。此外,随着收获的能量需求的变化,我们还描述了电路功耗对系统效率的影响。

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