ris辅助VLC系统的最大最小保密率和保密能效优化:RSMA与NOMA

IF 4.8 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Omar Maraqa;Sylvester Aboagye;Majid H. Khoshafa;Telex M. N. Ngatched
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引用次数: 0

摘要

将可见光通信(VLC)与可重构智能表面(RIS)集成,通过实现精确的方向信号控制和对通信环境的动态适应,显著提高了物理层安全性。这些功能加强了VLC系统的保密性和安全性。在考虑速率分裂多址(RSMA)和功率域非正交多址(NOMA)方案的情况下,对安全VLC系统中VLC接入点(AP)功率分配、RIS关联和RIS元素取向角的联合优化进行了全面研究。具体而言,提出了两种框架,通过共同优化功率域NOMA和rsma VLC系统的功率分配、RIS关联和RIS元素取向角,实现最小保密率(SR)和最小保密能量效率(SEE)的最大化。所提出的框架考虑了随机设备方向,并保证了最低的用户速率要求。所提出的优化框架属于混合整数非线性规划,没有已知的可行解方法来保证最优解。此外,由于功率控制、RIS关联和元素取向的共同考虑,增加了自由度和灵活性,导致决策变量和约束的集合很大,使优化问题更加复杂。为此,我们采用了一种基于遗传算法的求解方法,通过遗传算法的探索和开发能力,可以得到质量较好的解。此外,综合仿真表明,在各种网络参数下,RSMA方案在SR和SEE指标上都优于功率域NOMA方案。此外,还提供了有关最小用户速率要求、RIS元素数量和最大VLC AP发射功率对最小SR和SEE性能的影响的有用见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Max–Min Secrecy Rate and Secrecy Energy Efficiency Optimization for RIS-Aided VLC Systems: RSMA Versus NOMA
Integrating visible light communication (VLC) with the reconfigurable intelligent surface (RIS) significantly enhances physical layer security by enabling precise directional signal control and dynamic adaptation to the communication environment. These capabilities strengthen the confidentiality and security of VLC systems. This paper presents a comprehensive study on the joint optimization of VLC access point (AP) power allocation, RIS association, and RIS elements orientation angles for secure VLC systems, while considering rate-splitting multiple access (RSMA) and power-domain non-orthogonal multiple access (NOMA) schemes. Specifically, two frameworks are proposed to maximize both the minimum secrecy rate (SR) and the minimum secrecy energy efficiency (SEE) by jointly optimizing power allocation, RIS association, and RIS elements orientation angles for both power-domain NOMA and RSMA-based VLC systems. The proposed frameworks consider random device orientation and guarantee the minimum user-rate requirement. The proposed optimization frameworks belong to the class of mixed integer nonlinear programming, which has no known feasible solution methodology to guarantee the optimal solution. Moreover, the increased degree of freedom and flexibility from the joint consideration of power control, RIS association and element orientation results in a large set of decision variables and constraints, which further complicates the optimization problem. To that end, we utilize a genetic algorithm-based solution method, which through its exploration and exploitation capabilities can obtain a good quality solution. Additionally, comprehensive simulations show that the RSMA scheme outperforms the power-domain NOMA scheme across both the SR and SEE metrics over various network parameters. Furthermore, useful insights on the impact of minimum user rate requirement, number of RIS elements, and maximum VLC AP transmit power on the minimum SR and SEE performances are provided.
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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
25
审稿时长
10 weeks
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