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Implementation of differential power processing concept to switched-capacitor topology for PV sub-module level power balancing

机译:将差分功率处理概念实现到光伏电容器子模块级功率平衡的开关电容器拓扑

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Non-convex power characteristic curve with decreased peak power and with multiple local maxima occurs because of the partial shading and mismatching conditions among the series connected modules/sub-modules/cells. A number of power electronics topology has been proposed to equalize voltage of each series connected sub-module while providing an extra current path circuitry for mismatch current. The equalization is done by energy transfer between the sub-modules which brings all sub-modules to the same operating voltage and this collective operation produces a convex output power curve with increased peak power. A power electronics solution including minimum number of components and having higher efficiency is essential in this type of application from the perspective of installation costs and overall efficiency. This paper realizes a differential power processing (DPP) version of the recently presented sub-module level power balancing topology which uses nearly half of the converter number in comparison to the related literature. The DPP version of the topology provides improvement in efficiency for matched conditions and for some arbitrary partial shading patterns conditions over the string. PSpice simulation results are provided to show advantage of the approach in comparison to single output version.
机译:由于串联连接的模块/子模块/电池之间的部分阴影和不匹配条件,出现了峰值功率降低且具有多个局部最大值的非凸功率特性曲线。已经提出了许多电力电子拓扑,以均衡每个串联子模块的电压,同时提供用于失配电流的额外电流路径电路。均衡是通过子模块之间的能量转移来完成的,该能量转移使所有子模块达到相同的工作电压,并且这种集体操作产生了具有增加的峰值功率的凸输出功率曲线。从安装成本和总体效率的角度来看,包括最少数量的组件和更高效率的电力电子解决方案对于此类应用至关重要。本文实现了最近提出的子模块级功率平衡拓扑的差分功率处理(DPP)版本,与相关文献相比,该拓扑使用了几乎一半的转换器数量。拓扑的DPP版本提高了字符串上匹配条件和某些任意部分阴影图案条件的效率。提供了PSpice仿真结果,以显示与单输出版本相比该方法的优势。

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