Maximum Power Point Tracking and Voltage Control in a Solar-PV based DC Microgrid Using Simulink

Frank Miyagishima, Sijo Augustine, O. Lavrova, H. Nademi, S. Ranade, M. Reno
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Abstract

This paper discusses a solar photovoltaic (PV) DC microgrid system consisting of a PV array, a battery, DC-DC converters, and a load, where all these elements are simulated in MATLAB/Simulink environment. The design and testing entail the functions of a boost converter and a bidirectional converter and how they work together to maintain stable control of the DC bus voltage and its energy management. Furthermore, the boost converter operates under Maximum Power Point Tracking (MPPT) settings to maximize the power that the PV array can output. The control algorithm can successfully maintain the output power of the PV array at its maximum point and can respond well to changes in input irradiance. This is shown in detail in the results section.
基于Simulink的太阳能光伏直流微电网最大功率点跟踪与电压控制
本文讨论了一个由光伏阵列、电池、DC-DC变换器和负载组成的太阳能光伏直流微电网系统,并在MATLAB/Simulink环境中对这些元件进行了仿真。设计和测试包括升压变换器和双向变换器的功能,以及它们如何协同工作以保持直流母线电压的稳定控制及其能量管理。此外,升压变换器在最大功率点跟踪(MPPT)设置下工作,以最大限度地提高光伏阵列可以输出的功率。该控制算法能成功地将光伏阵列的输出功率保持在最大值,并能很好地响应输入辐照度的变化。结果部分详细说明了这一点。
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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