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A Novel Grid-Connected PV System Based on MMC to Get the Maximum Power Under Partial Shading Conditions

机译:基于MMC的新型并网光伏系统在部分遮蔽条件下获得最大功率

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In the case of partial shading, the output power of the unshaded PV modules will be decreased by the influence of the shaded PV modules in one branch. In order to solve this problem, this paper proposes a novel topology for a PV power generation system by connecting a PV module to the capacitor in each submodule of a modular multilevel converter parallel. As partial shading occurs, the maximum power can be extracted by regulating the capacitor voltage to the maximum power point voltage. With this proposed topology, the maximum power tracking controller, the redundancy module controller, the voltage stability controller, and the grid-connected controller are studied. Simulation and experiment results show that comparing to the traditional topology, the proposed topology can greatly improve the output power of the PV system under the conditions of partial shading and features with low-voltage stress and high efficiency.
机译:在部分阴影的情况下,未阴影的PV模块的输出功率将受到一个分支中阴影的PV模块的影响而降低。为了解决这个问题,本文提出了一种新型的光伏发电系统拓扑结构,方法是将光伏模块连接到模块化多电平转换器并联的每个子模块中的电容器上。当发生部分阴影时,可以通过将电容器电压调节为最大功率点电压来提取最大功率。利用这种提出的拓扑,研究了最大功率跟踪控制器,冗余模块控制器,电压稳定性控制器和并网控制器。仿真和实验结果表明,与传统拓扑相比,在局部遮蔽和低压应力高效率的条件下,该拓扑可以大大提高光伏系统的输出功率。

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