论文标题
在自我维持的IRS授权WPCN中优化的能量和信息中继
Optimized Energy and Information Relaying in Self-Sustainable IRS-Empowered WPCN
论文作者
论文摘要
本文提出了一种由无线电力通信网络(WPCN)中的自我维持的智能反射表面(IRS)赋予的混合延迟方案,以同时提高从混合访问点(HAP)向多个用户到从用户传输到Hap Hap Hap Hap Hap Hybrid Access Point(HAP)的下行链接能量传输(ET)的性能。我们提出了IRS的时间切换(TS)和功率分解(PS)方案,IRS可以通过在TS方案中的能量收集和信号反射之间切换或在PS方案中调整其反射幅度,从而从HAP的信号中收集能量。对于TS和PS方案,我们通过共同优化IRS的ET和IT以及网络资源分配的IRS相移来制定总和最大化问题。为了解决每个问题的非转化性,我们提出了一种两步算法,以高精度获得近乎最佳的解决方案。为了显示资源分配的结构,我们还研究了具有随机相移的方案的最佳解决方案。通过数值结果,我们表明,与没有IRS的基线方案相比,我们提出的计划可以实现显着的系统总和增益。
This paper proposes a hybrid-relaying scheme empowered by a self-sustainable intelligent reflecting surface (IRS) in a wireless powered communication network (WPCN), to simultaneously improve the performance of downlink energy transfer (ET) from a hybrid access point (HAP) to multiple users and uplink information transmission (IT) from users to the HAP. We propose time-switching (TS) and power-splitting (PS) schemes for the IRS, where the IRS can harvest energy from the HAP's signals by switching between energy harvesting and signal reflection in the TS scheme or adjusting its reflection amplitude in the PS scheme. For both the TS and PS schemes, we formulate the sum-rate maximization problems by jointly optimizing the IRS's phase shifts for both ET and IT and network resource allocation. To address each problem's non-convexity, we propose a two-step algorithm to obtain the near-optimal solution with high accuracy. To show the structure of resource allocation, we also investigate the optimal solutions for the schemes with random phase shifts. Through numerical results, we show that our proposed schemes can achieve significant system sum-rate gain compared to the baseline scheme without IRS.