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Experimental evaluation of hardware-based Global Maximum Power Point Searching methods

机译:基于硬件的全局最大功率点搜索方法的实验评估

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Operation under partial shading condition (PSC) significantly decreases energy extracted from photovoltaic (PV) power plants. Non-uniform insolation caused by the passing clouds and natural obstacles results in some PV modules to be effectively excluded from operation. Commercially used maximum power point tracking (MPPT) algorithms do not have any information about the global behavior of the PV string or array which they control. This can induce significant error in determining the optimum operating point and in turn affect efficiency of the system. This paper focuses on Global Maximum Power Point Searching (GMPPS) methods based on fast, hardware power-voltage (p-v) sweeping techniques. Two methods based on variable channel resistance of the MOSFET and switched inductor are analyzed and tested for a 3.5 kW PV array in the field conditions. Study shows that both solutions are suitable for accurate p-v sweep independently of the PV array configuration or shading pattern.
机译:在部分遮光条件(PSC)下运行可大大减少从光伏(PV)电厂中提取的能量。由云层和自然障碍物引起的不均匀日照导致某些光伏组件被有效地排除在运行之外。商业上使用的最大功率点跟踪(MPPT)算法没有任何有关其控制的PV串或阵列的全局行为的信息。这可能会导致在确定最佳工作点时出现重大错误,进而影响系统的效率。本文重点介绍基于快速,硬件功率-电压(p-v)扫描技术的全局最大功率点搜索(GMPPS)方法。针对现场功率条件为3.5 kW的PV阵列,分析和测试了两种基于MOSFET和开关电感器的可变沟道电阻的方法。研究表明,这两种解决方案均适合于精确的p-v扫描,而与PV阵列配置或阴影图案无关。

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