RIS Relaying UAV-Aided WPCN for Throughput Maximization

Xinhong Pan, Zhihai Zhang, Heyun Lin, Jiaying Zhang
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引用次数: 2

Abstract

This paper studies a reconfigurable intelligent surface (RIS) relaying unmanned aerial vehicle (UAV)-aided wireless powered communication network (WPCN), where a RIS acts as a relay and a UAV acts as a hybrid access point (HAP). Under this setup, we jointly optimize the UAV’s 2D hovering location and reflective beamforming vector at the RIS, for the purpose of maximizing the minimum throughput among all the ground users. To solve the non-convex min-throughput maximization problem, we propose a low-complexity alternating optimization approach to divide the original problem into two subproblems and solve them sequentially. In particular, we optimize the UAV’s 2D hovering location based on successive convex approximation (SCA) and the reflective beamforming vector by applying the technique of semi-definite relaxation (SDR). Numerical results verify the efficiency and performance of the algorithm and show that the proposed RIS relaying UAV-aided WPCN achieves significant performance gains over the conventional WPCN.
RIS中继无人机辅助WPCN的吞吐量最大化
本文研究了一种可重构智能表面(RIS)中继无人机辅助无线动力通信网络(WPCN),其中RIS作为中继,无人机作为混合接入点(HAP)。在此设置下,我们共同优化无人机在RIS的二维悬停位置和反射波束形成矢量,以最大化所有地面用户的最小吞吐量为目标。为了解决非凸最小吞吐量最大化问题,我们提出了一种低复杂度交替优化方法,将原问题划分为两个子问题并依次求解。特别地,我们基于连续凸逼近(SCA)和半定松弛(SDR)技术的反射波束形成矢量对无人机的二维悬停位置进行了优化。数值结果验证了该算法的有效性和性能,并表明RIS中继无人机辅助WPCN比传统WPCN具有显著的性能提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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