Rate maximization with QoS guarantees in IRS-assisted WPCN-NOMA systems

Carlos Augusto Melo de Pinho, F. Lima
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Abstract

In this article, Intelligent Reflecting Surface (IRS) technology is used to assist a Wireless Powered Communication Network (WPCN) system composed of a Hybrid Access Point (HAP) and multiple devices during downlink and uplink phases. In the downlink, devices charge their batteries through Wireless Power Transfer (WPT) from the power signals coming directly from the HAP and from the signals reflected by the IRS. In the uplink, the devices transmit their information signals to the HAP by employing Non-Orthogonal Multiple Access (NOMA). In the HAP, information is decoded through Successive Interference Cancellation (SIC). Based on this system model, an optimization problem is formulated so as to maximize the total uplink data rate subject to individual Quality of Service (QoS) guarantees for devices where IRS's phase shifts, uplink/downlink time duration and device ordering in SIC are optimized. Motivated by the high complexity of the optimization problem, we employ alternate optimization where Genetic Algorithm (GA) is used to define IRS's phase shifts in uplink/downlink and a heuristic solution is employed to optimize the remaining variables. Simulation results show that the proposed solution is able to satisfy different levels of QoS demands with higher spectral efficiency compared to baseline solutions.
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irs辅助WPCN-NOMA系统中具有QoS保证的速率最大化
本文将智能反射面(IRS)技术应用于由混合接入点(HAP)和多个设备组成的无线供电通信网络(WPCN)系统的下行和上行阶段。在下行链路中,设备通过无线电力传输(WPT)从直接来自HAP的电力信号和IRS反射的信号为电池充电。在上行链路中,设备将自己的信息信号通过NOMA (Non-Orthogonal Multiple Access)传输给HAP。在HAP中,信息通过连续干扰抵消(SIC)解码。在此系统模型的基础上,通过对SIC中IRS相移、上行/下行时间和设备排序进行优化,提出了在保证单个服务质量(QoS)的前提下,使设备上行总数据速率最大化的优化问题。由于优化问题的高复杂性,我们采用了交替优化,其中遗传算法(GA)用于定义上行/下行的IRS相移,并采用启发式解决方案来优化剩余变量。仿真结果表明,与基线方案相比,该方案能够以更高的频谱效率满足不同级别的QoS需求。
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