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Optimal Resource Allocation in Wireless Powered Communication Networks With User Cooperation

机译:用户协作的无线通信网络中的最佳资源分配

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This paper investigates the optimal resource allocation in wireless powered communication network with user cooperation, where two single-antenna users first harvest energy from the signals transmitted by a multi-antenna hybrid access point (H-AP) and then cooperatively send information to the H-AP using their harvested energy. To explore the system information transmission performance limit, an optimization problem is formulated to maximize the weighted sum-rate (WSR) by jointly optimizing energy beamforming vector, time assignment, and power allocation. Besides, another optimization problem is also formulated to minimize the total transmission time for given amount of data required to be transmitted at the two sources. Because both problems are non-convex, we first transform them to be convex by using proper variable substitutions and then apply semi-definite relaxation to solve them. We theoretically prove that our proposed methods guarantee the global optimum of both problems. Simulation results show that system WSR and transmission time can be significantly enhanced by using energy beamforming and user cooperation. It is observed that when the total amount of information of two users is fixed, with the increase of the information amount of the user relatively farther away from the H-AP, the transmission time of the user cooperation scheme decreases while that of the direct transmission increases. Besides, the effects of user position on the system performances are also discussed, which provides some useful insights.
机译:本文研究了与用户合作的无线通信网络中的最佳资源分配,其中两个单天线用户首先从多天线混合接入点(H-AP)传输的信号中获取能量,然后协同将信息发送给H -AP使用他们收集的能量。为了探索系统信息传输的性能极限,提出了一个优化问题,以通过联合优化能量波束形成矢量,时间分配和功率分配来最大化加权总和(WSR)。此外,还提出了另一个优化问题,以使在两个源处需要传输给定数据量的总传输时间最小化。因为这两个问题都不是凸的,所以我们首先通过使用适当的变量替换将它们转换为凸的,然后应用半定松弛来解决它们。我们从理论上证明了我们提出的方法保证了这两个问题的全局最优。仿真结果表明,利用能量波束赋形和用户协作可以显着提高系统的WSR和传输时间。可以看出,当两个用户的信息总量固定时,随着用户信息量的增加,距离H-AP较远,用户协作方案的传输时间减少,而直接传输的时间减少。增加。此外,还讨论了用户位置对系统性能的影响,这提供了一些有用的见解。

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