In this paper, we propose a fairness-aware rate maximization scheme for a wireless powered communications network (WPCN) assisted by an intelligent reflecting surface (IRS). The proposed scheme combines user scheduling based on time division multiple access (TDMA) and (mechanical) angular displacement of the IRS. Each energy harvesting user (EHU) has dedicated time slots with optimized durations for energy harvesting and information transmission whereas, the phase matrix of the IRS is adjusted to focus its beam to a particular EHU. The proposed scheme exploits the fundamental dependence of the IRS channel path-loss on the angle between the IRS and the node's line-of-sight, which is often overlooked in the literature. Additionally, the network design can be optimized for large number of IRS unit cells, which is not the case with the computationally intensive state-of-the-art schemes. In fact, the EHUs can achieve significant rates at practical distances of several tens of meters to the base station (BS) only if the number of IRS unit cells is at least a few thousand.
翻译:在本文中,我们建议为无线动力通信网络制定一个公平觉悟率最大化计划,并辅以智能反射表面(IRS),拟议的计划将基于时间分区多重接入(TDMA)和IRS(机械)角移位的用户时间安排结合起来。每个能源采集用户(EHU)都有专门的时段,优化能源采集和信息传输的时间长度,而IRS的阶段矩阵则进行调整,将光束聚焦于特定的EHU。拟议的计划利用IRS频道路径在IRS和节点视线之间的角的基本依赖性,而文献中通常忽略了这一点。此外,网络设计可以优化用于大量的IRS单元细胞,这在计算密集的状态计划中并不如此。事实上,只有IRS单元的数目至少是几千个,EUR单元的距离才能在离基地站几米的实际距离达到相当高的速率。