MPPT Charge Controller Design in a Solar PV System Under Rapidly Changing Climate Condition

Mostafizur Rahman, M. W. Rahman
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Abstract

This paper presents a detailed theoretical study of photovoltaic (PV) systems and their operation using the MPPT (Maximum Power Point Tracking) method and presents the simulation of photovoltaic modules validated by computer software simulation followed by an experimental setup of MATLAB R2017a. The first approach to build the performance of a photovoltaic solar panel is to use a maximum power point tracker in rapidly changing climatic conditions and use a DC-DC converter to maximize the output power. This framework can operate at the maximum power point MPP and produces its highest power in different irradiance conditions when the solar panels are partially shaded. The main perspectivesis design and simulation of a simple but efficient charge controller by utilizing maximum power point tracker for photovoltaic system and analysis results show that this MPPT system with perturb & observe (P&O) method and the DCDC Boost converter can significantly increase the efficiency and the performance of PV.
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快速变化气候条件下太阳能光伏系统的MPPT充电控制器设计
本文采用MPPT(最大功率点跟踪)方法对光伏系统及其运行进行了详细的理论研究,并通过计算机软件仿真验证了光伏模块的仿真,并在MATLAB R2017a中进行了实验设置。建立光伏太阳能电池板性能的第一种方法是在快速变化的气候条件下使用最大功率点跟踪器,并使用DC-DC转换器最大限度地提高输出功率。该框架可以在最大功率点MPP下工作,并在不同的辐照度条件下,当太阳能电池板部分遮蔽时,产生最高的功率。利用最大功率点跟踪器对光伏系统进行了简单高效的充电控制器设计和仿真,分析结果表明,采用扰动观测(P&O)方法和DCDC Boost变换器的MPPT系统可以显著提高光伏系统的效率和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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