基于模糊控制方法的光伏发电最大功率点跟踪

Jiyong Li, Hong-hua Wang
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引用次数: 67

摘要

由于光伏电池具有非线性的电流-电压特性,因此光伏电池的输出功率随着日照量和环境温度的变化而不断变化。因此,光伏电池的最大功率点随日照量和环境温度的变化而变化。随着电力电子转换器效率的提高,现在可以在光伏发电系统的最大功率点(MPP)运行,以提高整个系统的效率。提出了一种跟踪光伏发电系统最大功率点的模糊控制方法,并建立了控制系统。本文在MATLAB软件中建立了基于模糊控制方法的光伏系统最大功率点跟踪仿真模型。仿真结果表明,与传统的光伏发电系统最大功率点跟踪算法相比,模糊控制算法显著提高了跟踪阶段的效率。特别适用于快速变化的环境条件。此外,该算法简单,可以很容易地在任何快速微处理器(如数字信号处理器)上实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum power point tracking of photovoltaic generation based on the fuzzy control method
The power available at the output of photovoltaic cells keeps changing with solar insolation and ambient temperature because photovoltaic cells exhibit a nonlinear current-voltage characteristic. So photovoltaic cells' maximum power point varies with solar insolation and ambient temperature. With the improved efficiencies of power electronics converters, it is now possible to operate photovoltaic power systems at its maximum power point (MPP) in order to improve the overall system efficiency. This paper presents a fuzzy control method for tracking maximum power point in photovoltaic power systems and the control system is established simultaneously. In this paper, simulation model of photovoltaic system's maximum power point tracking based on the fuzzy control method is developed in the MATLAB software. The results of simulation show that the fuzzy control algorithm significantly improves the efficiency during the tracking phase as compared to a conventional algorithm about maximum power point tracking (MPPT) in photovoltaic power systems. It is especially suitable for fast changing environmental conditions. Furthermore, the proposed algorithm is simple and can be easily implemented with any fast micro processor such as a digital signal processor.
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