Fronthaul Compression and RIS Beamforming Design for Cloud-RAN: Active RIS Versus Passive RIS

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초록

This letter investigates a multi-cell reconfigurable intelligent surface (RIS)-assisted cloud radio access network (Cloud-RAN), where multiple remote radio heads (RRHs) are connected to a central unit (CU) via limited-capacity fronthaul links, and multiple user equipments (UEs) in each cell are supported by dedicated RISs. In particular, we provide a unified comparative analysis of three RIS architectures-active RIS, passive RIS with continuous phase shifts, and passive RIS with discrete phase shifts-highlighting their fundamental performance trade-offs under practical fronthaul and RIS structural constraints. To mitigate the effects of fronthaul limitations and inter-cell interference, we propose a joint optimization framework for fronthaul compression, coordinated transmit power allocation, and RIS beamforming to maximize the system sum-rate. Numerical results verify that the proposed approach effectively balances fronthaul resource constraints and RIS configuration flexibility, providing key insights into the performance trade-offs of different RIS architectures for practical network deployments.

키워드

Reconfigurable intelligent surfacesOptimizationNiobiumQuantization (signal)Joining processesArray signal processingCloudsDesign methodologyRadio access networksRegional area networksReconfigurable intelligent surface (RIS)fronthaulquantizationbeamforming
제목
Fronthaul Compression and RIS Beamforming Design for Cloud-RAN: Active RIS Versus Passive RIS
저자
Kim, JihyungJeong, SeongahKang, Jinkyu
DOI
10.1109/LWC.2026.3722277
발행일
2026
유형
Article
저널명
IEEE Wireless Communications Letters
15
페이지
4723 ~ 4727