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首页> 外文期刊>IEEE transactions on wireless communications >Energy-Efficient Resource Allocation for Wireless Powered Communication Networks
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Energy-Efficient Resource Allocation for Wireless Powered Communication Networks

机译:无线通信网络的节能资源分配

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摘要

This paper considers a wireless powered communication network (WPCN), where multiple users harvest energy from a dedicated power station and then communicate with an information receiving station. Our goal is to investigate the maximum achievable energy efficiency (EE) of the network via joint time allocation and power control while taking into account the initial battery energy of each user. We first study the EE maximization problem in the WPCN without any system throughput requirement. We show that the EE maximization problem for the WPCN can be cast into EE maximization problems for two simplified networks via exploiting its special structure. For each problem, we derive the optimal solution and provide the corresponding physical interpretation, despite the nonconvexity of the problems. Subsequently, we study the EE maximization problem under a minimum system throughput constraint. Exploiting fractional programming theory, we transform the resulting nonconvex problem into a standard convex optimization problem. This allows us to characterize the optimal solution structure of joint time allocation and power control and to derive an efficient iterative algorithm for obtaining the optimal solution. Simulation results verify our theoretical findings and demonstrate the effectiveness of the proposed joint time and power optimization.
机译:本文考虑了无线通信网络(WPCN),其中多个用户从专用电站收集能量,然后与信息接收站进行通信。我们的目标是通过联合时间分配和功率控制来研究网络的最大可实现能源效率(EE),同时考虑每个用户的初始电池能量。我们首先研究WPCN中的EE最大化问题,而没有任何系统吞吐量要求。我们表明,通过利用WPCN的特殊结构,可以将WPCN的EE最大化问题转化为两个简化网络的EE最大化问题。对于每个问题,尽管存在问题的非凸性,我们都可以得出最优解并提供相应的物理解释。随后,我们研究了最小系统吞吐量约束下的EE最大化问题。利用分数规划理论,我们将结果非凸问题转化为标准凸优化问题。这使我们能够表征联合时间分配和功率控制的最优解结构,并导出一种用于获得最优解的有效迭代算法。仿真结果验证了我们的理论发现,并证明了所提出的联合时间和功率优化的有效性。

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