FUZZY MAXIMUM POWER POINT TRACKING CONTROLLERS FOR PHOTOVOLTAIC SYSTEMS: A COMPARATIVE ANALYSIS

Ammar Ghalib Al-Gizi, Abbas Miry, Hussein M. Hathal, A. Craciunescu
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Abstract

The design of an effective fuzzy maximum power point tracking controller plays a crucial aspect in enhancing the photovoltaic system’s efficiency. This article aims to design and compare the performance of symmetric and asymmetric types of fuzzy controllers’ maximum power point tracking algorithms. Depending on the BP SX150S module’ power-voltage attributes at standard technical conditions, the input membership function parameters are derived. Moreover, the effect of fuzzy memberships’ quantity is also examined in this article. Where Five and seven triangular memberships are used. For the simulation, MATLAB is used to assess the effectiveness of the fuzzy controllers. Simulation results show that the asymmetric controller outperforms the symmetric type in terms of transient and steady-state tracking for different numbers of membership functions. Specifically, when employed with 5-triangle memberships, the asymmetric controller outperforms the symmetrical controller in terms of rise time, tracking precision, and energy output, respectively, by 83%, 0.06%, and 14.14%. While, the rise time, tracking precision, and energy yield of 7-triangle memberships are all improved by 86.7%, 0.04%, and 14.78%, respectively. Using asymmetric type, 7-triangle memberships enhance the rise time and harvested energy by around 18.2% and 0.082%, respectively. Overall, the most effective tracking technique for enhancing the photovoltaic system’s efficiency is the asymmetric type, independent of the quantity of memberships.
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光伏系统的模糊最大功率点跟踪控制器:比较分析
设计有效的模糊最大功率点跟踪控制器对提高光伏系统的效率至关重要。本文旨在设计和比较对称型和非对称型模糊控制器最大功率点跟踪算法的性能。根据 BP SX150S 模块在标准技术条件下的功率-电压属性,得出了输入成员函数参数。此外,本文还研究了模糊成员数量的影响。其中使用了五个和七个三角形成员。仿真中使用了 MATLAB 来评估模糊控制器的有效性。仿真结果表明,对于不同的成员函数数,非对称控制器在瞬态和稳态跟踪方面优于对称型控制器。具体来说,当采用 5 三角成员时,非对称控制器在上升时间、跟踪精度和能量输出方面分别比对称控制器优胜 83%、0.06% 和 14.14%。而 7 三角形成员的上升时间、跟踪精度和能量输出都分别提高了 86.7%、0.04% 和 14.78%。使用非对称类型时,7 三角形成员的上升时间和收获能量分别提高了约 18.2% 和 0.082%。总之,在提高光伏系统效率方面,最有效的跟踪技术是非对称类型,与成员数量无关。
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CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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