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MPPT of a Photovoltaic Panels Array with Partial Shading Using the IPSM with Implementation Both in Simulation as in Hardware

机译:光伏电池板阵列的MPPT,使用IPSM具有局部遮阳,在仿真中的实施中的实现如硬件

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摘要

This article presents a method for the Maximum Power Point Tracking (MPPT) of a Photovoltaic (PV) panels array with partial shading, applying an Improved Pattern Search Method (IPSM). The method is simulated in PSIM @ and then implemented in hardware in the loop system, emulating the PV array on an industrial computer (Speedgoat) that allows real-time emulations and the IPSM is applied in an Arduino DUE. The experiments were carried out with TP245S-20/WD, KYOCERA KC200GT, YINGLY SOLAR JS65, and MSX60 photovoltaic panels. The results are the proper MPPT with changes in partial shading over time, inducing the increase and decrease of the maximum power point. The results obtained are the search for the global maximum power point in a matrix of panels in which, due to partial shading, it might have several local maximum power points, and thanks to the IPSM algorithm, it always manages to find the global maximum power point. Finally, the results are compared with other methods where it was found that IPSM had faster answers.
机译:本文介绍了具有部分阴影的光伏(PV)面板阵列的最大功率点跟踪(MPPT)的方法,应用改进的模式搜索方法(IPSM)。该方法在PSIM @中模拟,然后在循环系统中的硬件中实现,在工业计算机(speedgoat)上模拟允许实时仿真和IPSM在Arduino到期的速度仿真上的PV阵列。实验用TP245S-20 / WD,Kyocera KC200GT,鹅绒太阳能JS65和MSX60光伏板进行。结果是适当的MPPT,随着时间的推移,部分阴影的变化,诱导最大功率点的增加和降低。所获得的结果是搜索面板矩阵中的全局最大功率点,其中由于部分着色,它可能有几个局部最大功率点,并且由于IPSM算法,它总是管理以查找全局最大功率观点。最后,将结果与发现IPSM具有更快的答案的其他方法进行了比较。

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