Secrecy Energy Efficiency Optimization for IRS-Aided Multi-user Communication System

Guanghao Jiang, Xiang Zhao, Wei Zhang
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Abstract

Energy efficiency and security are strongly required performance metrics for future wireless communication systems. As a high energy-efficiency technology, intelligent reflecting surface (IRS) can make wireless channel controllable, which is just desirable for physical layer security technology to extend the difference between the legal and eavesdropping channel. Up to now, most research on the secrecy energy efficiency (SEE) of IRS-aided communication systems are available for single legal user. In this paper, we investigate an IRS-aided multi-user wireless system and formulate a SEE maximization problem which is subject to the constraints of the transmit beamforming at base station and the reflecting beamforming at IRS. Generally, it is difficult to obtain an exact SEE under an imperfect eavesdropping channel state information. Thus, a lower bound of SEE is finally determined by an alternate optimization algorithm after a Dinkelbach transforming of the original problem. Simulation results show that IRS can effectively improve the SEE of the system, and the proposed algorithm is better than the benchmark algorithm in terms of SEE.
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irs辅助多用户通信系统的保密能效优化
能源效率和安全性是未来无线通信系统迫切需要的性能指标。智能反射面(IRS)作为一种高能效技术,可以使无线信道可控,这正是物理层安全技术扩大合法信道与窃听信道的区别所需要的。目前,大多数针对irs辅助通信系统的保密能效(SEE)的研究都是针对单个合法用户进行的。本文研究了一种IRS辅助的多用户无线系统,提出了一个受基站发射波束形成和IRS反射波束形成约束的SEE最大化问题。一般来说,在不完全的窃听信道状态信息下,很难获得准确的SEE。因此,对原问题进行Dinkelbach变换后,最终由一种备选优化算法确定SEE的下界。仿真结果表明,IRS可以有效地提高系统的SEE,并且所提算法在SEE方面优于基准算法。
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