This paper presents an active RIS-aided multiple-input multiple-output (MIMO) system, in which an active RIS is configured to assist point-to-point communication between a multiple-antenna base station (BS) and multiple-antenna user equipment (UE).
Abstract
The reconfigurable intelligent surface (RIS) is a promising technology for the beyond-5G and 6G wireless communication systems. It can improve the wireless communication performance, facilitate interference cancellation between users and other signals. In this paper, we present an active RIS-aided multiple-input multiple-output (MIMO) system, in which we configure an active RIS to assist point-to-point communication between a multiple-antenna base station (BS) and multiple-antenna user equipment (UE). Specifically, the transmit precoder at the BS and the reflecting coefficient matrix at the RIS are optimized to maximize the spectral efficiency (SE) at the UE based on an alternating optimization (AO) algorithm, where the precoder and reflecting coefficient are iteratively updated. First, the precoder at the BS is optimized using the singular value decomposition (SVD) method while keeping the RIS reflecting coefficient matrix fixed. Second, for the fixed transmit precoder, the RIS reflecting coefficient matrix is updated using the semidefinite relaxation (SDR) method. We evaluate the proposed algorithm against conventional passive and active RIS schemes and show that the proposed scheme outperforms the compared architectures in terms of SE for single-user MIMO systems.
Simultaneously transmitting and reflecting reconfigurable intelligent surfaces (STAR-RISs) can dynamically adjust wireless channels through joint controls. The recent development of dual STAR-RISs (D-STAR) architecture provides capacity improvement by utilizing signals impinging from 360-degree for full-plane service c...
Yu-Ting Li, Kai-Ten Feng, Li-Hsiang Shen et al.· IEEE Transactions on Communi...· 0 citations
A unified RIS-RSMA optimization framework for asynchronous downlink CF-MIMO and targeted comparisons using WMMSE and regularized zero-forcing private precoders, together with the common-power allocation results, support the need for joint common/private precoder design.
Ghadir Dogim, Ahmed E. El-Mahdy, Falko Dressler· IEEE Open Journal of the Com...· 0 citations
Simulation results show that the proposed method can significantly improve the sum rate of users as compared to benchmark with FPA + Optimized STAR-RIS, 6DMA + Random STAR-RIS, and FPA + Random STAR-RIS.
Yuewei Wu, Ming-Hao Chen, Jing-Jing Yang et al.· IEEE Open Journal of the Com...· 0 citations
In integrated sensing and communication (ISAC) systems, stringent sensing performance constraints can severely limit the power available for communication. Hybrid reconfigurable intelligent surfaces (HRISs) with capabilities of both passive reflection and active signal amplification can significantly improve communicat...
Smriti Uniyal, Tian-Yu Fang, M. di Renzo et al.· 1 citation
This paper proposes an FA-empowered integrated sensing and communication (ISAC) system in which a reconfigurable intelligent surface (RIS) is employed to mitigate performance degradation in communication and sensing caused by blockages of line-of-sight links.
Zhijie Lyu, Ye Wang, Rui Wang et al.· IEEE Open Journal of the Com...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.