混合室内VLC网络的资源分配研究

IF 2.5 3区 物理与天体物理 Q2 OPTICS Optics Communications Pub Date : 2025-04-01 Epub Date: 2025-01-08 DOI:10.1016/j.optcom.2025.131503
XiZheng Ke, MengXia Wei, Huanhuan Qin
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引用次数: 0

摘要

为了解决异构可见光通信(VLC)网络中的资源分配(RA)挑战,本研究开发了一个室内VLC混合系统,该系统由多个VLC接入点(AP)、单个射频(RF)接入点和单个红外(IR) AP组成。提出了VLC/RF下行链路的联合负载平衡和功率分配策略,并为功率分配子问题量身定制了迭代算法和优化框架。它为每个AP分配功率以最大限度地提高数据吞吐量。该算法通过对偶变量的交替解确定最优功率分配。此外,在模拟中,采用四种不同的功率控制策略:等功率分配和充水算法、子信道独立优化算法和子信道联合优化算法,研究了IR上行链路中具有不同服务质量(QoS)要求的单个用户的有效容量。结果表明,该方法与步长或初始变量值无关,同时与传统的次梯度方法相比,具有更高的收敛速度和性能。系统容量和公平性显著提高,收敛速度加快。考虑基于系统容量的性能指标,子信道联合优化算法是最优功率控制策略。
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Research on resource allocation of hybrid indoor VLC networks
To address the resource allocation (RA) challenge in heterogeneous visible light communication (VLC) networks, this study develops an indoor VLC hybrid system comprising multiple VLC access points (APs), a single radio frequency (RF) access point, and a single infrared (IR) AP. A joint load balancing and power allocation strategy is proposed for the VLC/RF downlink, accompanied by an iterative algorithm and optimization framework tailored for the power allocation subproblem, which allocates power to each AP to maximize data throughput. The algorithm determines optimal power distribution through alternating solutions of dual variables. Furthermore, the effective capacity of a single user with varying quality of service (QoS) requirements in the IR uplink is examined, employing four distinct power control strategies: equal power allocation and Water-Filling algorithm, sub-channel independent optimization algorithm, and sub-channel joint optimization algorithm within simulations. Results indicate that this approach is agnostic to step size or initial variable values while offering enhanced convergence speed and performance compared to traditional subgradient methods. System capacity and fairness are notably improved alongside rapid convergence rates. Considering performance metrics based on system capacity, the sub-channel joint optimization algorithm is the optimal power control strategy.
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来源期刊
Optics Communications
Optics Communications 物理-光学
CiteScore
5.10
自引率
8.30%
发文量
681
审稿时长
38 days
期刊介绍: Optics Communications invites original and timely contributions containing new results in various fields of optics and photonics. The journal considers theoretical and experimental research in areas ranging from the fundamental properties of light to technological applications. Topics covered include classical and quantum optics, optical physics and light-matter interactions, lasers, imaging, guided-wave optics and optical information processing. Manuscripts should offer clear evidence of novelty and significance. Papers concentrating on mathematical and computational issues, with limited connection to optics, are not suitable for publication in the Journal. Similarly, small technical advances, or papers concerned only with engineering applications or issues of materials science fall outside the journal scope.
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