STAR-RIS辅助全双工NOMA通信网络

IF 10.7 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Wireless Communications Pub Date : 2025-01-02 DOI:10.1109/TWC.2024.3521869
Abdelhamid Salem;Kai-Kit Wong;Chan-Byoung Chae;Yangyang Zhang
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引用次数: 0

摘要

与传统的可重构智能表面(RIS)不同,最近出现了一种称为同步发射和反射可重构智能表面(STAR-RIS)的创新技术,旨在实现通信网络的360度完全覆盖。此外,全双工(FD)技术被认为是通过在同一时间和频率资源内实现同时传输和接收来提高频谱效率的有效方法。在本研究中,我们研究了star - ris辅助FD通信系统的性能。STAR-RIS战略性地放置在蜂窝边缘,以方便位于这一具有挑战性区域的用户通信,而蜂窝中心用户可以直接与FD基站(BS)通信。我们采用了一种非正交的多址配对方案,并考虑了系统的缺陷,如BS处的自干扰和不完全连续干扰抵消。我们推导了上行链路和下行链路通信中遍历率的封闭表达式,并将我们的分析扩展到蜂窝中心和蜂窝边缘用户之间的双向通信。在此基础上,提出了一个以遍历和速率最大化为目标的优化问题。这种优化包括调整STAR-RIS元件的幅度和相移,并有效地分配总发射功率。为了更深入地了解star - ris辅助FD系统的可实现速率,我们通过数值结果探索了各种系统参数的影响。
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STAR-RIS Assisted Full-Duplex NOMA Communication Networks
Different from conventional reconfigurable intelligent surfaces (RIS), a recent innovation called simultaneous transmitting and reflecting reconfigurable intelligent surface (STAR-RIS) has emerged, aimed at achieving complete 360-degree coverage in communication networks. Additionally, full-duplex (FD) technology is recognized as a potent approach for enhancing spectral efficiency by enabling simultaneous transmission and reception within the same time and frequency resources. In this study, we investigate the performance of a STAR-RIS-assisted FD communication system. The STAR-RIS is strategically placed at the cell-edge to facilitate communication for users located in this challenging region, while cell-center users can communicate directly with the FD base station (BS). We employ a non-orthogonal multiple access pairing scheme and account for system impairments, such as self-interference at the BS and imperfect successive interference cancellation. We derive closed-form expressions for the ergodic rates in both the up-link and down-link communications and extend our analysis to bidirectional communication between cell-center and cell-edge users. Furthermore, we formulate an optimization problem aimed at maximizing the ergodic sum-rate. This optimization involves adjusting the amplitudes and phase-shifts of the STAR-RIS elements and allocating total transmit power efficiently. To gain deeper insights into the achievable rates of STAR-RIS-aided FD systems, we explore the impact of various system parameters through numerical results.
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来源期刊
CiteScore
18.60
自引率
10.60%
发文量
708
审稿时长
5.6 months
期刊介绍: The IEEE Transactions on Wireless Communications is a prestigious publication that showcases cutting-edge advancements in wireless communications. It welcomes both theoretical and practical contributions in various areas. The scope of the Transactions encompasses a wide range of topics, including modulation and coding, detection and estimation, propagation and channel characterization, and diversity techniques. The journal also emphasizes the physical and link layer communication aspects of network architectures and protocols. The journal is open to papers on specific topics or non-traditional topics related to specific application areas. This includes simulation tools and methodologies, orthogonal frequency division multiplexing, MIMO systems, and wireless over optical technologies. Overall, the IEEE Transactions on Wireless Communications serves as a platform for high-quality manuscripts that push the boundaries of wireless communications and contribute to advancements in the field.
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