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Simulations of the Performance of Maximum Power Point Tracking Algorithms Based on Experimental Data According to the Topologies of DC-DC Converters

机译:根据DC-DC转换器拓扑基于实验数据的基于实验数据的最大功率点跟踪算法模拟

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Maximum Power Point Tracking (MPPT) algorithms are now widely used in PV systems independently of the weather conditions. In function of the application, a DC-DC converter topology is chosen without any previous performance test under normal weather conditions. This paper proposes an experimental evaluation of MPPT algorithms according to DC-DC converters topologies, under normal operation conditions. Four widely used MPPT algorithms i.e. Perturb and Observe (P & O), Hill Climbing (HC), Fixed step Increment of Conductance (INCF) and Variable step Increment of Conductance (INCV) are implemented using two topologies of DC-DC converters i.e. buck and boost converters. As input variables to the PV systems, recorded irradiance and temperature, and extracted photovoltaic parameters (ideality factor, series resistance and reverse saturation current) were used. The obtained results show that buck converter has a lot of power losses when controlled by each of the four MPPT algorithms. Meanwhile, boost converter presents a stable output power during the whole day. Once more, the results show that INCV algorithm has the best performance.
机译:最大功率点跟踪(MPPT)算法现在广泛用于光伏系统中,独立于天气条件。在应用程序的功能中,选择DC-DC转换器拓扑,在正常天气条件下没有任何先前的性能测试。本文提出了根据DC-DC转换器拓扑的MPPT算法的实验评估,在正常运行条件下。四种广泛使用的MPPT算法 IE扰动和观察(P& o),爬山(HC),电导(Incf)的固定步骤增量和电导(Incv)的可变步长增量(Incv)是使用两个拓扑实现的DC-DC转换器 IE降压和升压转换器。作为光伏系统的输入变量,使用录制的辐照度和温度,以及提取的光伏参数(理想因子,串联电阻和反向饱和电流)。所获得的结果表明,当四个MPPT算法中的每一个控制时,降压转换器具有大量功率损耗。同时,升压转换器在整个日间都具有稳定的输出功率。再次,结果表明,INCV算法具有最佳性能。

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