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March 28, 2026Electronics1 citationsOpen Access

Power Allocation for Sum-Rate Maximization in VLC-NOMA Systems with Improved Particle Swarm Optimization

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HZHeng ZhangAir Force Engineering UniversityJLJiahao LiAir Force Engineering UniversityJTJie TangXihua University

Key Points

  • The research aims to optimize power allocation for maximizing sum-rate in VLC-NOMA systems using an improved optimization strategy.
  • Developed an improved particle swarm optimization (IPSO) strategy.
  • Implemented adaptive mechanisms like dynamic inertia weight and cooperative evolutionary learning.
  • Tested the optimization approach through simulations across various interference scenarios.
  • The IPSO strategy significantly improved overall system capacity.
  • Achieved faster convergence compared to conventional methods.
  • Showed enhanced robustness in different interference conditions.

Abstract

Non-orthogonal multiple access (NOMA) has been recognized as a promising technique to alleviate the bandwidth limitation in visible light communication (VLC) downlinks. Nevertheless, the corresponding power allocation problem is typically non-convex and computationally challenging under practical system constraints, which limits the effectiveness of conventional optimization approaches. To address this issue, this paper proposes an improved particle swarm optimization (IPSO)-based strategy that aims at maximizing the system sum rate and employs adaptive mechanisms including an adaptive dynamic inertia weight, cooperative evolutionary learning factors, and enhanced elite opposition-based learning (EEOBL) to strengthen both global search capability and convergence performance. Simulation results indicate that the proposed scheme significantly improves the overall system capacity across diverse interference scenarios, while achieving accelerated convergence and enhanced robustness.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69c771518bbfbc51511e136dhttps://doi.org/10.3390/electronics15071378
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