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Energy efficiency tradeoff in downlink and uplink TDD OFDMA with simultaneous wireless information and power transfer

机译:在同时进行无线信息和功率传输的下行链路和上行链路TDD OFDMA中的能量效率权衡

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Energy-efficient design in orthogonal frequency division multiple access (OFDMA) is becoming increasingly important, considering the booming energy consumption in wireless networks and the extensive deployment of OFDMA-based wireless infrastructures. On the other hand, wireless power transfer brings another promising approach for saving energy and prolonging lifetime in wireless networks by letting users scavenge energy from the received radio-frequency (RF) signals all over the wireless environments, including the desired information beams and undesired interference beams. In this paper, we study the downlink and uplink energy efficiency (EE) tradeoff in time-division duplexing (TDD) OFDMA with one access point (AP) and multiple users, where the users are allowed to split the received signals for decoding information and harvesting energy in the downlink, respectively. The established optimization problem turns to be an integer-mixed nonconvex program. Through relaxation and transformation, we develop a near-optimal resource allocation strategy that approaches the Pareto optimal tradeoff performance. Numerical results show that there may exist a tradeoff between the downlink and uplink EE and the AP can help improve the uplink EE by operating the downlink at the suboptimal EE regime.
机译:考虑到无线网络中不断增长的能源消耗以及基于OFDMA的无线基础架构的广泛部署,正交频分多址(OFDMA)中的节能设计变得越来越重要。另一方面,无线功率传输通过让用户在整个无线环境中从接收的射频(RF)信号中清除能量,包括期望的信息束和不希望的干扰,为节省能量并延长无线网络的寿命带来了另一种有前途的方法梁。在本文中,我们研究了具有一个接入点(AP)和多个用户的时分双工(TDD)OFDMA中的下行链路和上行链路能量效率(EE)的权衡,其中允许用户拆分接收的信号以解码信息,分别在下行链路中收集能量。所建立的优化问题变成了整数混合的非凸程序。通过放松和转换,我们开发了一种接近帕累托最优权衡性能的近乎最优的资源分配策略。数值结果表明,在下行链路EE和上行链路EE之间可能存在折衷,并且AP可以通过在次优EE体制下操作下行链路来帮助改善上行链路EE。

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