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Design and Analysis of the Distributed Controller for the Modular Multilevel Cascaded Converter

机译:模块化多级级联变换器的分布式控制器设计与分析

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The modular multilevel cascaded converter (MMCC) has in recent years drawn interest for applying in the utility-scale photovoltaic (PV) and the battery energy storage (BES) systems. However, the large numbers of the cascaded modules lead to the difficulty of the implementation with a centralized control architecture. The paper [1] has proposed a distributed control strategy which significantly reduces the complexity and increases the flexibility to expand the system. This paper continues the research which analyzes the operation range of each module and its fault tolerant capability. The analysis provides a guideline to design the MMCC controller based on the distributed control approach. Simulation and experimental results are carried out on a star-connected cascaded converter to validate the analysis.
机译:模块化多级级联转换器(MMCC)近年来引起了在公用事业规模光伏(PV)和电池能量存储(BES)系统中应用的兴趣。然而,大量的级联模块导致难以使用集中式控制架构来实现。文献[1]提出了一种分布式控制策略,该策略可显着降低复杂度并增加扩展系统的灵活性。本文继续进行研究,分析每个模块的工作范围及其容错能力。该分析为基于分布式控制方法设计MMCC控制器提供了指导。在星形连接的级联转换器上进行仿真和实验结果以验证分析。

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