Joint Transceiver Design for Decoupled Full-Duplex Wireless Powered Communication Networks with Lens Antenna Arrays

Rongbin Guo, Minjian Zhao, Ming-Min Zhao
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Abstract

In this paper, we consider the joint design of power allocation, beam selection and precoding matrices for decoupled full-duplex (FD) wireless powered communication networks (WPCN) with lens antenna arrays. Firstly, we formulate the optimization problem to maximize the minimum rate of all users. The formulated problem contains complicated discrete binary constraints, as well as the highly coupled nonconvex objective function. Then we introduce auxiliary variables and transform the original problem into a more tractable form. Finally, we propose an efficient algorithm to solve the transformed problem based on the penalty dual decomposition (PDD) method. Simulation results demonstrate that our proposed algorithm approaches the optimal performance of the full-duplex fully digital transceiver scheme, and outperforms the competing scheme.11This work was supported by the National Science Foundation of China (NSFC) under Grant 91538103 and the Fundamental Research Funds for the Central Universities 2018FZA5006.
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透镜天线阵列解耦全双工无线供电通信网络联合收发器设计
本文研究了带透镜天线阵列的解耦全双工无线通信网络(WPCN)的功率分配、波束选择和预编码矩阵联合设计。首先,我们制定了优化问题,以最大化所有用户的最小率。该问题包含复杂的离散二元约束,以及高度耦合的非凸目标函数。然后引入辅助变量,将原问题转化为更易于处理的形式。最后,我们提出了一种基于惩罚对偶分解(PDD)方法的求解变换问题的有效算法。仿真结果表明,该算法接近全双工全数字收发器方案的最佳性能,并优于竞争方案。11国家自然科学基金项目(91538103)和中央高校基本科研业务费专项资金(2018FZA5006)资助
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