论文标题
智能反射表面辅助旋转系统的保密率最大化
Secrecy Rate Maximization for Intelligent Reflecting Surface Aided SWIPT Systems
论文作者
论文摘要
同时无线信息和电力传输(SWIPT)和智能反射表面(IRS)是两种有前途的技术,用于为能源受限的无线设备提供增强的无线通信能力和可持续的能源供应。此外,美国国税局和旋转的组合可以产生“一个加一个大于两个大于两个”效果。但是,由于无线媒体的广播性质,IRS辅助的Swipt系统很容易窃听。在本文中,我们研究了IRS ADED SWIPT系统的安全问题。目的是通过共同设计基于基站(BS)的发射光束形成和人工噪声(AN)协方差矩阵,并在IRS处进行反射光束,在BS和能量收集(EH)在多个能量接收器处的发射功率约束(在IRS下)。为了解决公式的非凸问题,我们首先采用交替优化(AO)算法将耦合变量解除。然后,可以分别使用基于惩罚的算法和半决赛弛豫(SDR)方法来优化反射范围,传输波束形成和协方差矩阵。仿真结果证明了拟议方案对基线方案的有效性。
Simultaneous wireless information and power transfer (SWIPT) and intelligent reflecting surface (IRS) are two promising techniques for providing enhanced wireless communication capability and sustainable energy supply to energy-constrained wireless devices. Moreover, the combination of the IRS and the SWIPT can create the "one plus one greater than two" effect. However, due to the broadcast nature of wireless media, the IRS-aided SWIPT systems are vulnerable to eavesdropping. In this paper, we study the security issue of the IRS-aided SWIPT systems. The objective is to maximize the secrecy rate by jointly designing the transmit beamforming and artificial noise (AN) covariance matrix at a base station (BS) and reflective beamforming at an IRS, under transmit power constraint at the BS and energy harvesting (EH) constraints at multiple energy receivers. To tackle the formulated non-convex problem, we first employ an alternating optimization (AO) algorithm to decouple the coupling variables. Then, reflective beamforming, transmit beamforming and AN covariance matrix can be optimized by using a penalty-based algorithm and semidefinite relaxation (SDR) method, respectively. Simulation results demonstrate the effectiveness of the proposed scheme over baseline schemes.