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适用于部分阴影条件下光伏系统的改进型海洋捕食者最大功率点跟踪算法。

Improved marine predator MPPT algorithm for photovoltaic systems in partial shading conditions.

作者信息

Zheng Hanbo, Du Qi, Mo Shuqin, Qin Tuanfa, Wang Shusheng, Li Zhe

机构信息

Guangxi Key Laboratory of Power System Optimization and Energy Technology, Guangxi University, Nanning, 530004, China.

China Water Northeastern Investigation Design & Research CO., LTD., Changchun, 130021, China.

出版信息

Sci Rep. 2025 Jul 1;15(1):21092. doi: 10.1038/s41598-025-06408-9.

Abstract

When the photovoltaic arrays are subject to partial shading (PS), their output characteristics show a multi-peak phenomenon. Under this circumstance, it will be a challenge to track the maximum power point (MPP), which impacts power generation efficiency. Therefore, achieving efficient maximum power point tracking (MPPT) in a photovoltaic (PV) system under PS is an important element in enhancing PV system efficiency. To optimize PV array output efficiency under PS conditions, this paper investigates a MPPT algorithm for PV arrays in partial shading environments. This algorithm is optimized and improved accordingly based on the Marine Predator Algorithm (MPA). Firstly, the initial position voltage is modified, which provides a more accurate and stable basis for the subsequent calculation. Next, the mechanism of overstepping is optimized to ensure that the particles will not exceed the preset range in the search process. Then, introducing the elite population guidance mechanism and restart algorithm to speed up the tracking of the entire algorithm. Lastly, the Perturbation and Observation algorithm is added to minimize the power fluctuation and improve tracking accuracy. The improved algorithm and the original algorithm, particle swarm algorithm, and incremental conductance method are embedded in the model of the PV system for the simulation of maximum power point tracking, respectively. Experiments show that the tracking time of the improved algorithm is improved by 32.6%, 76.5%, and 50% compared to the original algorithm, particle swarm algorithm, and incremental conductance method, respectively, under uniform illumination. Under dynamic irradiance conditions, the proposed algorithm has a tracking efficiency of up to 99.95%, which is over 15% higher than the comparison algorithm. The outcomes reveal that the improved algorithm is faster and more efficient in tracking compared to the other three algorithms.

摘要

当光伏阵列受到部分遮挡(PS)时,其输出特性会呈现多峰现象。在这种情况下,跟踪最大功率点(MPP)将成为一项挑战,这会影响发电效率。因此,在部分遮挡情况下的光伏(PV)系统中实现高效的最大功率点跟踪(MPPT)是提高光伏系统效率的一个重要因素。为了优化部分遮挡条件下光伏阵列的输出效率,本文研究了一种用于部分遮挡环境中光伏阵列的MPPT算法。该算法基于海洋捕食者算法(MPA)进行了相应的优化和改进。首先,对初始位置电压进行了修正,为后续计算提供了更准确、稳定的基础。其次,对越界机制进行了优化,以确保粒子在搜索过程中不会超出预设范围。然后,引入精英种群引导机制和重启算法来加快整个算法的跟踪速度。最后,添加了扰动观察算法,以最小化功率波动并提高跟踪精度。分别将改进算法与原始算法、粒子群算法和增量电导法嵌入到光伏系统模型中进行最大功率点跟踪仿真。实验表明,在均匀光照条件下,改进算法的跟踪时间分别比原始算法、粒子群算法和增量电导法提高了32.6%、76.5%和50%。在动态辐照度条件下,所提算法的跟踪效率高达99.95%,比对比算法高出15%以上。结果表明,与其他三种算法相比,改进算法在跟踪速度和效率上更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcca/12217664/6a5fd0c08d3d/41598_2025_6408_Fig1_HTML.jpg

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