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In fixed subarray partition scheme, the closed expressions of the optimal transmit covariance matrix and the optimal reflection coefficients are obtained through theoretical analysis, where the reflection coefficients are optimized by coordinate descent method. The fixed subarray partition scheme is not limited by the subarray structure and the number of subarray units. In dynamic subarray partition scheme, we transform the subarray partition optimization problem into a task assignment problem, and propose an improved discrete particle swarm optimization (DPSO) algorithm to solve it. Simulations and analyses show that compared with the without partition scheme, two proposed schemes can achieve a satisfactory secrecy rate while reducing system complexity and hardware cost. In addition, the dynamic subarray partition scheme has better secrecy rate performance and better stability than fixed subarray partition scheme, but its implementation is more complex.</p>","PeriodicalId":23827,"journal":{"name":"Wireless Personal Communications","volume":"68 1","pages":""},"PeriodicalIF":1.9000,"publicationDate":"2024-08-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"RIS-Assisted MIMO Secure Communication Schemes Based on Fixed and Dynamic Subarray Partition\",\"authors\":\"Suzhen Wang, Hui Zhi, Changlin Tian, Hongcheng Wu\",\"doi\":\"10.1007/s11277-024-11388-6\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>The subarray partition of reconfigurable intelligent surface (RIS) can reduce the complexity and hardware cost of the RIS architecture while achieving satisfactory performance, which has great practical significance. 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In dynamic subarray partition scheme, we transform the subarray partition optimization problem into a task assignment problem, and propose an improved discrete particle swarm optimization (DPSO) algorithm to solve it. Simulations and analyses show that compared with the without partition scheme, two proposed schemes can achieve a satisfactory secrecy rate while reducing system complexity and hardware cost. 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引用次数: 0
摘要
可重构智能表面(RIS)的子阵列划分可以降低 RIS 架构的复杂性和硬件成本,同时获得令人满意的性能,具有重要的现实意义。然而,现有的 RIS 子阵列分区方法没有考虑有窃听者的场景,不适合这种场景。因此,本文讨论了子阵列分区和反射系数的联合优化设计,以最大限度地提高多天线窃听器场景下的系统保密率。由于该问题是一个非凸组合优化问题,我们采用交替优化的方法解决该问题,并分别提出了基于固定子阵划分和动态子阵划分的 RIS 辅助 MIMO 安全通信方案。在固定子阵划分方案中,通过理论分析得到了最优发射协方差矩阵和最优反射系数的封闭表达式,其中反射系数采用坐标下降法进行优化。固定子阵列划分方案不受子阵列结构和子阵列单元数量的限制。在动态子阵列划分方案中,我们将子阵列划分优化问题转化为任务分配问题,并提出了一种改进的离散粒子群优化算法(DPSO)来解决该问题。仿真和分析表明,与不分区方案相比,两种拟议方案都能达到令人满意的保密率,同时降低了系统复杂度和硬件成本。此外,动态子阵列分区方案比固定子阵列分区方案具有更好的保密率性能和稳定性,但其实现更为复杂。
RIS-Assisted MIMO Secure Communication Schemes Based on Fixed and Dynamic Subarray Partition
The subarray partition of reconfigurable intelligent surface (RIS) can reduce the complexity and hardware cost of the RIS architecture while achieving satisfactory performance, which has great practical significance. However, existing RIS subarray partition methods do not consider the scenario with eavesdropper and are not suitable for such scenario. Therefore, this paper discusses the joint optimization design of subarray partition and reflection coefficients to maximize the system secrecy rate in the multi-antenna eavesdropper scenario. Since this problem is a nonconvex combinatorial optimization problem, we solve it by alternating optimization, and propose RIS-assisted MIMO secure communication schemes based on fixed and dynamic subarray partition respectively. In fixed subarray partition scheme, the closed expressions of the optimal transmit covariance matrix and the optimal reflection coefficients are obtained through theoretical analysis, where the reflection coefficients are optimized by coordinate descent method. The fixed subarray partition scheme is not limited by the subarray structure and the number of subarray units. In dynamic subarray partition scheme, we transform the subarray partition optimization problem into a task assignment problem, and propose an improved discrete particle swarm optimization (DPSO) algorithm to solve it. Simulations and analyses show that compared with the without partition scheme, two proposed schemes can achieve a satisfactory secrecy rate while reducing system complexity and hardware cost. In addition, the dynamic subarray partition scheme has better secrecy rate performance and better stability than fixed subarray partition scheme, but its implementation is more complex.
期刊介绍:
The Journal on Mobile Communication and Computing ...
Publishes tutorial, survey, and original research papers addressing mobile communications and computing;
Investigates theoretical, engineering, and experimental aspects of radio communications, voice, data, images, and multimedia;
Explores propagation, system models, speech and image coding, multiple access techniques, protocols, performance evaluation, radio local area networks, and networking and architectures, etc.;
98% of authors who answered a survey reported that they would definitely publish or probably publish in the journal again.
Wireless Personal Communications is an archival, peer reviewed, scientific and technical journal addressing mobile communications and computing. It investigates theoretical, engineering, and experimental aspects of radio communications, voice, data, images, and multimedia. A partial list of topics included in the journal is: propagation, system models, speech and image coding, multiple access techniques, protocols performance evaluation, radio local area networks, and networking and architectures.
In addition to the above mentioned areas, the journal also accepts papers that deal with interdisciplinary aspects of wireless communications along with: big data and analytics, business and economy, society, and the environment.
The journal features five principal types of papers: full technical papers, short papers, technical aspects of policy and standardization, letters offering new research thoughts and experimental ideas, and invited papers on important and emerging topics authored by renowned experts.