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面向窃听用户的RIS-MISO系统鲁棒资源分配算法
引用本文:徐勇军,徐然,周继华,万杨亮,黄崇文,刘伯红.面向窃听用户的RIS-MISO系统鲁棒资源分配算法[J].电子与信息学报,2022,44(7):2253-2263.
作者姓名:徐勇军  徐然  周继华  万杨亮  黄崇文  刘伯红
作者单位:1.重庆邮电大学通信与信息工程学院 重庆 4000652.重庆金美通信有限责任公司 重庆 4000303.航天新通科技有限公司 重庆 4013324.95696部队 重庆 4000305.浙江大学信息与电子工程学院 杭州 3100276.重庆邮电大学计算机科学与技术学院 重庆 400065
基金项目:国家自然科学基金(61601071, 62071078),重庆市自然科学基金(cstc2019jcyj-xfkxX0002)
摘    要:针对信道不确定性影响、用户信息泄露和能效提升等问题,该文提出一种基于不完美信道状态信息的可重构智能反射面(RIS)多输入单输出系统鲁棒资源分配算法。首先,考虑能量收集最小接收功率约束、合法用户最小保密速率约束、基站最大发射功率约束及RIS相移约束,基于有界信道不确定性,建立一个联合优化基站主动波束、能量波束、RIS相移矩阵的多变量耦合非线性资源分配问题。然后,利用Dinkelbach,S-procedure和交替优化方法,将原非凸问题转换成确定性凸优化问题,并提出一种基于连续凸近似的交替优化算法。仿真结果表明,与传统非鲁棒算法对比,所提算法具有较低的中断概率。

关 键 词:可重构智能反射面  不完美信道状态信息  能效最大化
收稿时间:2021-12-20

Robust Resource Allocation Algorithm for RIS-Assisted MISO Systems with Eavesdroppers
XU Yongjun,XU Ran,ZHOU Jihua,WAN Yangliang,HUANG Chongwen,LIU Bohong.Robust Resource Allocation Algorithm for RIS-Assisted MISO Systems with Eavesdroppers[J].Journal of Electronics & Information Technology,2022,44(7):2253-2263.
Authors:XU Yongjun  XU Ran  ZHOU Jihua  WAN Yangliang  HUANG Chongwen  LIU Bohong
Abstract:To resolve the problems of the effect of channel uncertainties, information leakage of users and energy-efficient improvement, a robust resource allocation algorithm for Reconfigurable Intelligent Surface (RIS)-assisted multiple-input single-output systems with eavesdroppers and imperfect channel state information is proposed. Firstly, considering the constraints of the minimum received power of energy-harvesting devices, the minimum secure rate of each legitimate user, the maximum transmit power of the base station and the phase-shift matrix of RIS, a multi-variable coupling and nonlinear resource optimization problem is formulated by jointly optimizing the information beamforming, energy beamforming and the phase shifts under bounded channel uncertainties. Then, the original non-convex problem is transformed into a deterministic convex one by using Dinkelbach’s method, S-Procedure and the alternating optimization method. An alternating optimization algorithm based on successive convex approximation is proposed to solve the problem. Simulation results show that the proposed algorithm has lower outage probabilities by comparing it with the traditional non-robust algorithms.
Keywords:
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