Power Minimization for the IRS-Aided SWIPT Secure Communication System with Imperfect Cascaded Channel

Chunlong He;Shuqiong Xu;Gongbin Qian;Xingquan Li;Chiya Zhang
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Abstract

Intelligent reflecting surface (IRS)-assisted simultaneous wireless information and power transfer (SWIPT) is a promising technology for prolonging the lifetime of the users and improving system performance. However, it is challenging to obtain the perfect channel state information (CSI) at the base station (BS) due to the lack of radio frequency (RF) chains at the IRS, which becomes even harder when eavesdroppers (Eves) exist. In this paper, we study the power issues in the IRS-aided SWIPT system under the imperfect CSI of BS-IRS-Eves links. We aim to minimize the transmitting power at the BS by jointly designing transmit beamforming and reflective beamforming with subject to the rate outage probability constraints of the Eves, the energy harvesting constraints of the energy receivers (ERs), and the minimum rate constraints of the information receivers (IRs). We use Bernstein-type inequality to solve the rate outage probability constraints. Afterward, the formulated non-convex problem can be efficiently tackled by employing alternating optimization (AO) combined with semidefinite relaxation (SDR) and penalty convex-concave procedure (CCP). Numerical results demonstrate the effectiveness of the proposed scheme.
具有不完全级联信道的irs辅助SWIPT保密通信系统的功率最小化
智能反射面(IRS)辅助无线信息和功率同时传输(SWIPT)是一种很有前途的延长用户寿命和提高系统性能的技术。然而,由于在IRS处缺乏射频(RF)链,在基站(BS)处获得完美的信道状态信息(CSI)是具有挑战性的,当存在窃听者(Eves)时,这变得更加困难。在本文中,我们研究了在BS IRS Eves链路的不完美CSI下,IRS辅助SWIPT系统中的功率问题。我们的目标是通过联合设计发射波束成形和反射波束成形,使BS处的发射功率最小化,同时受Eves的速率中断概率约束、能量接收器(ER)的能量获取约束和信息接收器(IR)的最小速率约束。我们使用Bernstein型不等式来求解速率中断概率约束。然后,将交替优化(AO)与半定松弛(SDR)和惩罚凸凹过程(CCP)相结合,可以有效地解决公式化的非凸问题。数值结果证明了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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