混合主动/被动智能反射面辅助的SWIPT系统吞吐量最大化OA
Throughput Maximization of Hybrid Active/Passive IRS-Assisted SWIPT System
智能反射面(intelligent reflecting surface,IRS)与同步无线信息和能量传输(simultaneous wireless information and power transfer,SWIPT)的结合,已成为一种经济高效的技术方案,可以同时提升信息与能量传输性能.本研究提出了一种新的混合主动/被动IRS辅助的SWIPT系统,通过部署一个主动IRS和一个被动IRS,帮助多天线基站同时向多个信息用户和能量用户传输信息和能量.目标是联合优化发射机波束成形及主动IRS和被动IRS的反射矩阵,在满足发射功率限制、能量用户的能量收集要求和主动IRS的功率限制的条件下,实现系统总吞吐量的最大化.为了解决由于优化变量高度耦合导致的求解难题,本文提出了一种基于交替优化与半正定松弛技术的高效算法,以获得高质量的解决方案.仿真结果表明,混合主动/被动IRS辅助的SWIPT 系统显著提升了吞吐量性能,优于现有基准方案.
The integration of the intelligent reflecting surface(IRS)with simultaneous wireless information and power transfer(SWIPT)has emerged as a cost-effective and efficient solution to enhance the performance of information and energy transfer.In this research,a hybrid active/passive IRS-assisted SWIPT system is proposed.Specifically,an active IRS(AIRS)and a passive IRS(PIRS)are deployed in the SWIPT system to facilitate a multiantenna base station(BS)in simultaneously delivering information and energy to multiple information users(IUs)and energy users(EUs).The objective is to maximize the sum throughput by jointly optimizing the transmitter beamforming and the reflection coefficient matrices of the AIRS and the PIRS while satisfying the transmitter power constraints,the energy harvesting(EH)requirements of EUs,and the AIRS amplification power limitations.However,the optimization variables are highly coupled and cannot be solved directly.To tackle this complex problem,we propose an efficient algorithm based on alternating optimization(AO)and semi-definite relaxation(SDR)techniques to obtain high-quality solutions.Simulation results demonstrate that the hybrid active/passive IRS-assisted SWIPT system significantly enhances throughput performance and outperforms benchmark systems.
贺莹彤;吴贇
东华大学 信息科学与技术学院,上海 201620东华大学 信息科学与技术学院,上海 201620
信息技术与安全科学
同步无线信息和能量传输(SWIPT)智能反射面(IRS)混合主动/被动IRS吞吐量优化
simultaneous wireless information and power transfer(SWIPT)intelligent reflecting surface(IRS)hybrid active/passive IRSthroughput optimization
《东华大学学报(英文版)》 2026 (1)
59-67,9
National Natural Science Foundation of China(No.62301141)
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