Channel Estimation for STAR-RIS-Assisted Multi-User mmWave Wireless Systems

IF 4.6 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Wireless Communications Letters Pub Date : 2024-11-07 DOI:10.1109/LWC.2024.3493919
Xiaomei Luo;Yineng Liu;Fan Xu;Xiaoyang Li;Guangxu Zhu;Kaiming Shen
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Abstract

Channel estimation is one of the main challenges for deploying the simultaneously transmitting and reflecting reconfigurable intelligent surface (STAR-RIS) in millimeter-wave (mmWave) systems, due to the large number of transmission and reflection channels. This letter proposes two channel estimation strategies for the STAR-RIS-assisted multi-user mmWave systems. Firstly, a sparse matrix recovery problem is proposed to estimate the cascaded channels, which comprise the channels from the base station to the STAR-RIS and from the STAR-RIS to the users. Subsequently, an algorithm based on the alternating direction method of multipliers (ADMM) is developed to exploit the sparsity and low-rank characteristics of mmWave channels, where the optimal solution of each variable can be computed analytically at each iteration. Additionally, a method based on parallel factor (PARAFAC) decomposition and the least-squares (LS) technique is proposed to estimate each channel separately. Finally, numerical results demonstrate the superiority of the proposed schemes over existing ones.
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STAR-RIS 辅助多用户毫米波无线系统的信道估计
由于毫米波(mmWave)系统中有大量的传输和反射通道,信道估计是部署同时发射和反射可重构智能表面(STAR-RIS)的主要挑战之一。本文提出了两种用于star - ris辅助多用户毫米波系统的信道估计策略。首先,提出了一个稀疏矩阵恢复问题来估计级联信道,其中包括从基站到STAR-RIS和从STAR-RIS到用户的信道。在此基础上,利用毫米波信道的稀疏性和低秩特性,提出了一种基于交替方向乘法器(ADMM)的算法,每次迭代均可解析计算出各变量的最优解。此外,提出了一种基于并行因子分解和最小二乘技术的信道估计方法。最后,数值结果表明了所提方案优于现有方案。
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来源期刊
IEEE Wireless Communications Letters
IEEE Wireless Communications Letters Engineering-Electrical and Electronic Engineering
CiteScore
12.30
自引率
6.30%
发文量
481
期刊介绍: IEEE Wireless Communications Letters publishes short papers in a rapid publication cycle on advances in the state-of-the-art of wireless communications. Both theoretical contributions (including new techniques, concepts, and analyses) and practical contributions (including system experiments and prototypes, and new applications) are encouraged. This journal focuses on the physical layer and the link layer of wireless communication systems.
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