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Cooperative RIS and STAR-RIS Assisted mMIMO Communication: Analysis and Optimization
DOI:10.1109/TVT.2023.3264724.png)
摘要
En 中文
Reconfigurable intelligent surface (RIS) has emerged as a cost-effective and promising solution to extend the wireless signal coverage and improve the performance via passive signal reflection. Different from existing works which do not account for the cooperation between RISs or do not provide full space coverage, we propose the marriage of cooperative double-RIS with simultaneously transmitting and reflecting RIS (STAR-RIS) technologies denoted as RIS/STAR-RIS under correlated Rayleigh fading conditions to assist the communication in a massive multiple-input multiple-output (mMIMO) setup. The proposed architecture is superior since it enjoys the benefits of the individual designs. We introduce a channel estimation approach of the cascaded channels with reduced overhead. Also, we obtain the deterministic equivalent (DE) of the downlink achievable sum spectral efficiency (SE) in closed form based on large-scale statistics. Notably, relied on statistical channel state information (CSI), we optimise both surfaces by means of the projected gradient ascent method (PGAM), and obtain the gradients in closed form. The proposed optimization achieves to maximise the sum SE of such a complex system, and has low complexity and low overhead since it can be performed at every several coherence intervals. Numerical results show the benefit of the proposed architecture and verify the analytical framework. In particular, we show that the RIS/STAR-RIS architecture outperforms the conventional double-RIS or its single-RIS counterparts.
Keyword:
Double-RIS
simultaneously transmitting and reflecting RIS
correlated Rayleigh fading
spectral efficiency
6G networks
期刊
IF:
7.1
论文数:
1.8W
被引数:
6.6W
机构
引用论文
STAR-RISs: Simultaneous Transmitting and Reflecting Reconfigurable Intelligent SurfacesSTAR-RISs: 同时透射和反射可重构智能表面
Smart Radio Environments Empowered by Reconfigurable Intelligent Surfaces: How It Works, State of Research, and The Road Ahead由可重构智能表面支持的智能无线电环境: 工作原理、研究现状和未来之路

