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Wireless Powered Communication Networks With Non-Ideal Circuit Power Consumption

机译:具有非理想电路功耗的无线通信网络

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摘要

Abstract:Assuming non-ideal circuit power consumption at the energy harvesting (EH) nodes, we propose two practical protocols that optimize the performance of the harvest-then-transmit wireless powered communication networks (WPCNs) under two different objectives: (1) proportional fair (PF) resource allocation, and (2) sum rate maximization. These objectives lead to optimal allocations for the transmit power by the base station, which broadcasts RF radiation over the downlink, and optimal durations of the EH phase and the uplink information transmission phases within the dynamic time-division multiple access frame. Compared to the max-sum-rate protocol, the PF protocol attains a higher level of system fairness at the expense of the sum rate degradation. The PF protocol is advantageous over the max-sum-rate protocol in terms of system fairness regardless of the circuit power consumption, whereas the uplink sum rates of both protocols converge when this power consumption increases.
机译:摘要:假设在能量收集(EH)节点上存在非理想的电路功耗,我们提出了两种实用的协议,它们可以在两个不同的目标下优化收集-再发送无线通信网络(WPCN)的性能:(1)成比例公平(PF)资源分配,以及(2)总和率最大化。这些目标导致在下行链路上广播RF辐射的基站的发射功率的最佳分配,以及动态时分多址帧内EH阶段和上行链路信息传输阶段的最佳持续时间。与最大和速率协议相比,PF协议以和速率降低为代价获得了更高的系统公平性。不管电路功耗如何,PF协议在系统公平性方面都优于最大和速率协议,而当功耗增加时,两个协议的上行链路总速率都收敛。

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