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A Novel Topology for Solving the Partial Shading Problem in Photovoltaic Power Generation System

机译:一种求解光伏发电系统局部阴影问题的新型拓扑

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In centralized or string photovoltaic (PV) systems, PV modules must be connected in series in order to generate a sufficiently high voltage to avoid further amplification and to efficiently drive further converters. This always requires dozens of PV modules, however some of them maybe suffer from partial shadow caused by trees, clouds or other things. In this case, power generated from each PV module becomes unbalanced so that total output powers greatly decrease. Furthermore, hot-spot effect caused by partial shadow is likely to damage the PV cells and affect the security of PV system. In order to solve these problems, a novel topology of PV system composed of many series-connected PV modules with corresponding energy feedback circuits is proposed in this paper, a feedback circuit is independently utilized to feed the output energy of PV system to the corresponding circuit including shadowed PV module. The simulation and experimental results verify that the proposed topology can make each PV module operate on the maximum power point individually regardless of partial shadow. The energy feedback circuits do not operate without partial shadow, they have no power loss under this condition, therefore the circuit efficiency is improved.
机译:在集中式或串光伏(PV)系统中,光伏模块必须串联连接,以产生足够高的电压以避免进一步放大并有效地驱动其他转换器。这始终需要数十种PV模块,但其中一些可能受到树木,云或其他事物引起的部分阴影。在这种情况下,从每个PV模块产生的电源变得不平衡,使得总输出功率大大降低。此外,部分阴影引起的热点效应可能会损害光伏电池并影响光伏系统的安全性。为了解决这些问题,本文提出了由许多具有相应能量反馈电路的许多系列连接的PV模块组成的PV系统的新颖拓扑,反馈电路独立地用于将PV系统的输出能量馈送到相应的电路包括阴影光伏模块。仿真和实验结果验证了所提出的拓扑结构可以使每个PV模块在最大功率点上单独操作,无论部分阴影如何。能量反馈电路在没有部分阴影的情况下没有操作,在这种情况下它们没有功率损耗,因此电路效率得到改善。

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