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Simplified Modelling of the F2F MMC-Based High Power DC-DC Converter Including the Effect of Circulating Current Dynamics

机译:基于F2F MMC的大功率DC-DC转换器的简化建模,包括循环电流动力学的影响

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The Front-to-Front Modular Multilevel Converter (MMC) is one of the topologies being considered for high-voltage, high-power, dc-dc conversion. Hence, there is a need for the development of simplified models for such a converter in order to study how it behaves in a large power system. Direct interconnection of two MMC models is one option but it leads to high number of states. Moreover, symmetry of the converter offers further simplification opportunities. The use of this fact to develop a simplified models was reported in literature. However, the resulting models are only applicable when compensated modulation is used. Furthermore, these models neglect the effect of Circulating Current Suppression Controllers (CCSCs), which makes the models inaccurate in the presence of such controllers. This paper proposes a more general simplification approach that captures the effect of CCSC while minimizing the number of states. The proposed model is validated by using time domain simulations and modal (eigenvalue) analyses.
机译:从前到前的模块化多电平转换器(MMC)是考虑用于高电压,高功率DC-DC转换的拓扑之一。因此,需要开发用于这种转换器的简化模型,以研究其在大型电力系统中的行为。两个MMC模型的直接互连是一种选择,但是会导致大量状态。此外,转换器的对称性提供了进一步的简化机会。在文献中已经报道了使用该事实来开发简化的模型。但是,所得模型仅在使用补偿调制时才适用。此外,这些模型忽略了循环电流抑制控制器(CCSC)的作用,这使得在存在此类控制器的情况下模型不准确。本文提出了一种更通用的简化方法,该方法可在最小化状态数的同时捕获CCSC的影响。通过使用时域仿真和模态(特征值)分析来验证所提出的模型。

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