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Simulation Framework for DC Grid Control and ACDC Interaction Studies Based on Modular Multilevel Converters

机译:基于模块化多电平转换器的直流电网控制和ACDC交互研究仿真框架

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Modular multilevel converter (MMC) topology is discussed intensively as a crucial part of future dc grids, especially to integrate offshore wind power. While generalized voltage-source converter models are usually utilized for multiterminal investigations, conclusions on transient dc grid behavior and on ac–dc interactions during distorted ac grid conditions are hard to draw or are limited in their significance. In this paper, a MMC-based dc grid framework with a tripartite focus on an internal converter as well as dc and ac grid control is presented. Besides, an evaluation of the implemented MMC model that incorporates the available arm sum voltage, a decoupled ac and dc current system control concept that is suitable to handle unbalanced voltage conditions is derived for HVDC applications. Combined with wind farm arrays, this collocation allows a meaningful examination of hybrid ACDC structures and the implemented dc grid control methodologies. To provide proof of the universal applicability of this framework, simulations are carried out on a five-terminal system.
机译:模块化多电平转换器(MMC)拓扑作为未来直流电网的重要组成部分进行了深入讨论,特别是集成海上风电。虽然通常将电压源转换器模型用于多端研究,但很难得出关于瞬态直流电网行为以及在畸变的交流电网条件下的交流-直流相互作用的结论,或者其意义有限。在本文中,提出了一种基于MMC的直流电网框架,该框架重点关注内部转换器以及直流和交流电网控制。此外,对适用于HVDC应用的MMC模型的评估进行了评估,该模型结合了可用的臂总和电压,适用于处理不平衡电压条件的去耦交流和直流电流系统控制概念。结合风电场阵列,这种搭配可以对混合ACDC结构和已实施的直流电网控制方法进行有意义的检查。为了证明该框架的普遍适用性,在五端系统上进行了仿真。

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