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Combining Detailed Equivalent Model With Switching-Function-Based Average Value Model for Fast and Accurate Simulation of MMCs

机译:基于切换功能的平均值模型结合了详细的等效模型,以便快速准确地模拟MMCS

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摘要

Modeling and simulation play a vital role in the design and testing of modular multilevel converter (MMC) high voltage direct current (HVDC) systems. Detailed equivalent model (DEM) and switching-function-based average value model (SFB-AVM) are two major types of accurate and efficient models to represent the dynamic response of the MMCs. However, the DEM and the SFB-AVM possess unique benefits depending on the purpose of the simulation studies. The DEM provides a detailed representation of submodule (SM) switching events and individual capacitor ripples. The SFB-AVM provides faster simulation speed by using arm equivalent capacitance. Combining both models in a universal arm equivalent circuit gives the users the choice of selecting the most appropriate modeling method during dynamic simulation. This paper proposes a universal modeling framework combining the DEM with the SFB-AVM which allows the DEM and the SFB-AVM smoothly switch from one to the other during dynamic simulation. The proposed SFB-AVM can accurately represent the MMCs with different SM types. The proposed models are validated in offline and real-time simulation studies which demonstrate the improved simulation speeds of the proposed SFB-AVM over the DEM especially for large numbers of SMs.
机译:建模与仿真在模块化多电平转换器(MMC)高压直流(HVDC)系统的设计和测试中起着重要作用。详细的等效模型(DEM)和基于切换功能的平均值模型(SFB-AVM)是两种主要类型的准确和高效模型,以表示MMC的动态响应。但是,根据模拟研究的目的,DEM和SFB-AVM具有独特的好处。 DEM提供子模块(SM)切换事件和单个电容器纹体的详细表示。 SFB-AVM通过使用ARM等效电容提供更快的仿真速度。在通用ARM等效电路中结合两个模型,使用户可以选择在动态仿真期间选择最合适的建模方法。本文提出了一种通用建模框架,将DEM与SFB-AVM相结合,允许DEM和SFB-AVM在动态模拟期间从一个到另一个的SFB-AVM平滑地切换。所提出的SFB-AVM可以准确地表示具有不同SM类型的MMC。在离线和实时仿真研究中验证了所提出的模型,该研究展示了所提出的SFB-AVM对DEM的改进的模拟速度,特别是对于大量的SMS。

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