Modeling and Design of RIS-Assisted Multi-Cell Multi-Band Networks With RSMA

IF 10.7 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Wireless Communications Pub Date : 2025-03-11 DOI:10.1109/TWC.2025.3547828
Abdelhamid Salem;Kai-Kit Wong;Chan-Byoung Chae;Yangyang Zhang
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Abstract

Reconfigurable intelligent surface (RIS) has been identified as a promising technology for future wireless communication systems due to its ability to manipulate the propagation environment intelligently. RIS is a frequency-selective device, thus it can only effectively manipulate the propagation of signals within a specific frequency band. This frequency-selective characteristic can make deploying RIS in wireless cellular networks more challenging, as adjacent base stations (BSs) operate on different frequency bands. In addition, rate-splitting multiple access (RSMA) scheme has been shown to enhance the performance of RIS-aided multi-user communication systems. Accordingly, this work considers a more practical reflection model for RIS-aided RSMA communication systems, which accounts for the responses of signals across different frequency bands. To that end, new analytical expressions for the ergodic sum-rate are derived using the moment generating function (MGF) and Jensen’s inequality. Based on these analytical sum-rate expressions, novel practical RIS reflection designs and power allocation strategies for the RSMA scheme are proposed and investigated to maximize the achievable sum-rate in RIS-assisted multi-cell, multi-band cellular networks. Simple sub-optimal designs are also introduced and discussed. The results validate the significant gains of our proposed reflection design algorithms with RSMA over conventional schemes in terms of achievable sum-rate. Additionally, the power allocation strategy for the RSMA scheme is shown to offer superior performance compared to conventional precoding schemes that do not rely on RSMA.
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使用 RSMA 的 RIS 辅助多蜂窝多频段网络建模与设计
可重构智能表面(RIS)由于具有智能控制传播环境的能力,已被确定为未来无线通信系统的一种有前途的技术。RIS是一种频率选择性器件,因此它只能有效地控制信号在特定频段内的传播。这种频率选择特性使得在无线蜂窝网络中部署RIS更具挑战性,因为相邻的基站(BSs)在不同的频段上运行。此外,速率分割多址(RSMA)方案已被证明可以提高ris辅助多用户通信系统的性能。因此,这项工作考虑了一个更实用的ris辅助RSMA通信系统的反射模型,该模型考虑了不同频段信号的响应。为此,利用矩生成函数(MGF)和Jensen不等式,导出了遍历和速率的新解析表达式。基于这些解析和速率表达式,提出并研究了新的实用RIS反射设计和RSMA方案的功率分配策略,以最大限度地提高RIS辅助下多小区、多频段蜂窝网络的可实现和速率。还介绍和讨论了简单的次优设计。结果验证了我们提出的具有RSMA的反射设计算法在可实现的求和速率方面比传统方案有显著的提高。此外,与不依赖于RSMA的传统预编码方案相比,RSMA方案的功率分配策略显示出优越的性能。
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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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