用于分析和优化 RIS 辅助多输入多输出多路存取网络的统一框架

IF 8.9 1区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS
Siqiang Wang;Zhong Zheng;Jing Guo;Zesong Fei;Zhi Sun;Qin Zhang
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引用次数: 0

摘要

近年来,可重构智能表面(RISs)由于能够根据无线环境进行自我调整,在通信系统中越来越受到关注。因此,具有大规模RIS部署的通信系统能够无处不在地扩展高质量覆盖。这对于物联网(IoT)系统尤其有益,因为物联网设备可以位于难以到达的区域。另一方面,目前分析和优化多RISs部署通信系统性能的方法是临时的,这取决于具体的系统配置。目前还缺乏一个统一的理论框架,可以为被动和主动的ris辅助系统提供一般的分析处理,这些系统可能通过ris产生多个串联反射,这在物联网通信场景中是典型的。因此,我们研究了一般上行链路RIS辅助的多用户多输入多输出(MU-MIMO)通信系统,其中级联RIS面板的数量是任意的,RIS元件可以是有源或无源。利用线性化技巧和算子值自由概率论,导出了所考虑的MU-MIMO系统遍历和速率的统一解析表达式。然后,我们进一步提出了一种低复杂度的优化方法来设计RISs的相移,从而提高遍历和速率。数值结果验证了ris辅助系统分析结果的准确性。此外,还验证了所提优化算法的收敛性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Unified Framework for Analysis and Optimization of RIS-Assisted MIMO Multiple Access Networks
Recently, reconfigurable intelligent surfaces (RISs) are gaining increasing attention in communication systems due to their ability to adapt themself according to the wireless environment. Therefore, the communication systems with massive RIS deployments are able to extend high-quality coverage ubiquitously. This is especially beneficial for Internet of Things (IoT) systems as the IoT devices can be located in hard-to-reach area. On the other hand, current methods to analyze and optimize the performance of communication systems with multiple RISs deployment are ad hoc, which depends on the specific system configurations. There lacks a unified theoretical framework that provides general analytical treatment for both passive and active RIS-assisting systems, possibly having multiple concatenated reflections via RISs, which is typical in IoT communication scenarios. Thus, we investigate general uplink RIS-assisted multiuser multiple-input multiple-output (MU-MIMO) communication systems under general Rician fading channels, where the number of cascaded RIS panels are arbitrary and the RIS elements can be active or passive. By utilizing the linearization trick and the operator-valued free probability theory, a unified analytic expression of the ergodic sum rate for the considered MU-MIMO systems is derived. Then, we further propose a low-complexity optimization approach to design the RISs’ phase shifts, thus enhancing the ergodic sum rate. Numerical results verify the accuracy of the analytical results for RIS-assisted systems. In addition, the convergence and effectiveness of the proposed optimization algorithm are demonstrated.
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来源期刊
IEEE Internet of Things Journal
IEEE Internet of Things Journal Computer Science-Information Systems
CiteScore
17.60
自引率
13.20%
发文量
1982
期刊介绍: The EEE Internet of Things (IoT) Journal publishes articles and review articles covering various aspects of IoT, including IoT system architecture, IoT enabling technologies, IoT communication and networking protocols such as network coding, and IoT services and applications. Topics encompass IoT's impacts on sensor technologies, big data management, and future internet design for applications like smart cities and smart homes. Fields of interest include IoT architecture such as things-centric, data-centric, service-oriented IoT architecture; IoT enabling technologies and systematic integration such as sensor technologies, big sensor data management, and future Internet design for IoT; IoT services, applications, and test-beds such as IoT service middleware, IoT application programming interface (API), IoT application design, and IoT trials/experiments; IoT standardization activities and technology development in different standard development organizations (SDO) such as IEEE, IETF, ITU, 3GPP, ETSI, etc.
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