Energy Consumption Optimization in RIS-Assisted Cooperative RSMA Cellular Networks
Shreya Khisa, Mohamad Elhattab, Chadi Assi, Sanaa Sharafeddine

TL;DR
This paper develops an energy-efficient RIS-assisted cooperative RSMA system, optimizing multiple parameters through an alternating optimization algorithm, leading to significant energy savings compared to existing schemes.
Contribution
It introduces a joint optimization framework for RIS-assisted cooperative RSMA networks, addressing non-convexity with an efficient alternating optimization algorithm.
Findings
Achieves significant energy consumption reduction compared to existing schemes.
Demonstrates the effectiveness of RIS in enhancing cooperative RSMA performance.
Provides a low-complexity solution for joint optimization in RIS-assisted networks.
Abstract
This paper presents a downlink reconfigurable intelligent surface (RIS)-assisted half-duplex (HD) cooperative rate splitting multiple access (C-RSMA) networks. The proposed system model is built up considering one base station (BS), one RIS, and two users. With the goal of minimizing the network energy consumption, a joint framework to optimize the precoding vectors at the BS, common stream split, relaying device transmit power, the time slot allocation, and the passive beamforming at the RIS subject to the power budget constraints at both the BS and the relaying node, the quality of service (QoS) constraints at both users, and common stream rate constraint is proposed. The formulated problem is a non-convex optimization problem due to the high coupling among the optimization variables. To tackle this challenge, an efficient algorithm is presented by invoking the alternating…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Antenna Design and Analysis · Antenna Design and Optimization
