DRL Enabled Coverage and Capacity Optimization in STAR-RIS Assisted Networks
Xinyu Gao, Wenqiang Yi, Yuanwei Liu, Jianhua Zhang, Ping Zhang

TL;DR
This paper introduces a multi-objective reinforcement learning approach to optimize coverage and capacity in STAR-RIS assisted wireless networks, outperforming traditional methods and enhancing network performance.
Contribution
It proposes a novel MO-PPO algorithm with two update strategies for effective long-term coverage and capacity optimization in STAR-RIS networks, forming a Pareto front of solutions.
Findings
The MO-PPO algorithm outperforms fixed-weight optimization methods.
STAR-RIS networks surpass conventional wireless networks in coverage and capacity.
Millimeter wave offers higher capacity but smaller coverage at the same bandwidth.
Abstract
Simultaneously transmitting and reflecting reconfigurable intelligent surfaces (STAR-RISs) is a promising passive device that contributes to a full-space coverage via transmitting and reflecting the incident signal simultaneously. As a new paradigm in wireless communications, how to analyze the coverage and capacity performance of STAR-RISs becomes essential but challenging. To solve the coverage and capacity optimization (CCO) problem in STAR-RIS assisted networks, a multi-objective proximal policy optimization (MO-PPO) algorithm is proposed to handle long-term benefits than conventional optimization algorithms. To strike a balance between each objective, the MO-PPO algorithm provides a set of optimal solutions to form a Pareto front (PF), where any solution on the PF is regarded as an optimal result. Moreover, in order to improve the performance of the MO-PPO algorithm, two update…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Satellite Communication Systems · Advanced Antenna and Metasurface Technologies
