Jul 2026· International Mediterranean Conference on Communications and Networking· pp. 1-6· 0 citations· 15 references
Computer Science
Abstract
Reconfigurable intelligent surface (RIS)-aided cellfree multiple-input multiple-output (CF-MIMO) is emerging as a pivotal architecture for 6G networks, promising ubiquitous coverage and high spectral efficiency. However, the large-scale deployment of RISs entails significant challenges in network planning, specifically the joint optimization of sparse RIS deployment, phase configuration, and active beamforming. This constitutes a complex mixed-integer non-linear programming (MINLP) problem. To address this, we propose a unified deep reinforcement learning (DRL) framework, which optimizes discrete RIS selection and continuous beamforming variables in an end-to-end manner. Specifically, we introduce a Top-K relaxation mechanism to handle the binary deployment constraints and group-wise phase control strategy to mitigate the high-dimensional action space in large-scale RISs. Simulation results demonstrate that the proposed framework effectively achieves rapid convergence. Specifically, the proposed joint optimization yields a maximum sum-rate improvement of 40.4% over the network without RISs.
A scalable four-layer radio network planning framework that jointly optimizes the deployment of distributed active antenna arrays and passive reconfigurable intelligent surfaces (RISs) and demonstrates a competitive 10–15% margin of improvement in spectral efficiency over recent state-of-the-art DRL-based RIS framework...
Valdemar Farré, J. Vega-Sánchez, Alejandro Cama-Pinto et al.· Italian National Conference...· 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
This paper considers a downlink communication framework comprising a simultaneously transmitting and reflecting reconfigurable intelligent surface (STAR-RIS)-aided by orthogonal time frequency space (OTFS) and non-orthogonal multiple access (NOMA) technologies. Further, delay-Doppler mobility in such frameworks renders...
Rais J. Gachaba, Manobendu Sarker, Anirban Bhowal· 0 citations
This letter investigates the sensing-centric design of reconfigurable intelligent surface (RIS)-enabled rate-splitting multiple access-integrated sensing and communication (RSMA-ISAC) systems. Specifically, we propose a new beam-gain approximation method to enhance the sensing beam gain while satisfying communication q...
Xue-Jun Cheng, Qian Zhang, Y. Jiao et al.· IEEE Wireless Communications...· 1 citation
Integrated sensing and communication (ISAC) under a cell-free (CF) architecture enables seamless connectivity and sensing coverage by allowing multiple distributed access points (APs) to jointly serve users and detect targets, thereby mitigating cell-edge effects and enhancing spatial diversity. However, wideband CF-IS...
Xintong Zhou, Feng Ke, Xiu-Yin Zhang et al.· IEEE Transactions on Communi...· 0 citations
A unified optimization framework that integrates Dinkelbach fractional programming, a rigorously derived weighted minimum mean square error (WMMSE) reformulation, second-order cone programming (SOCP), and Riemannian manifold optimization within a provably convergent alternating structure is developed.
I. Hburi, A. Abdulameer, N. Abbas et al.· Journal of Communications So...· 0 citations
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