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Design of a novel MPPT algorithm based on the two stage searching method for PV systems under partial shading

机译:基于局部遮荫下PV系统两阶段搜索方法的新型MPPT算法设计

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When photovoltaic panels are non-uniformly irradiated, they experience shadowing effect and the power against voltage curve will demonstrate multiple peaks which cause maximum power point tracking method to become challenging. A method often used to track the real peak is the two stage searching method which uses a ratio of the open circuit voltage. However, this method has some shortcomings especially at heavy shadowing condition where it can easily miss the real peak and demonstrate a slow tracking speed. Hence, a novel method to track the GMPP based on the two stage open circuit voltage method was proposed in this paper with the aim of improving the speed and accuracy of the tracker. The Simulink/SimPowerSystems environment is used to model a photovoltaic system with bypass diodes which can take both temperature and irradiance as inputs to be able to simulate different shading patterns for the implementation of the tracking algorithm. The response of the system was compared with other models proposed in previous papers to validate the system and it was found that the system could most accurately model the characteristic of the panel. Afterwards, the maximum power point tracking algorithm was tested and compared with the above-mentioned two stage searching method. It was observed that the new method was able to reach the real peak faster.
机译:当光伏面板不均匀地照射时,它们会经历遮光效果,并且抵抗电压曲线的功率将展示多个峰,这导致最大功率点跟踪方法变得具有挑战性。通常用于跟踪实际峰的方法是使用开路电压的比率的两个阶段搜索方法。然而,这种方法具有一些缺点,特别是在沉重的阴影条件下,可以轻松地错过真正的峰值并展示跟踪速度慢。因此,本文提出了一种基于两级开路电压电压方法跟踪GMPP的新方法,目的是提高跟踪器的速度和精度。 Simulink / SimPowersystems环境用于模拟具有旁路二极管的光伏系统,可以将温度和辐照度作为输入,以便能够模拟用于实现跟踪算法的不同阴影模式。将系统的响应与先前论文提出的其他模型进行了比较,以验证系统,并发现该系统可以最准确地模拟面板的特性。然后,测试最大功率点跟踪算法并与上述两级搜索方法进行比较。观察到新方法能够更快地达到真正的峰值。

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