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The Use of Averaged-Value Model of Modular Multilevel Converter in DC Grid

机译:模块化多电平变换器的均值模型在直流电网中的应用

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This paper investigates the applicability of averaged-value models (AVMs) for modular multilevel converters (MMCs) operating in a voltage-sourced converter-based-high-voltage dc (VSC-HVDC) grid. The AVM models are benchmarked by comparison with a detailed electromagnetic transient model of the grid, including a fully detailed MMC model. Analysis results show that the AVM is only effective as long as the capacitors are large enough to maintain nearly constant voltage across each MMC submodule. This paper also shows that previously developed MMC averaged models are not able to accurately simulate the transients under dc fault conditions. This paper introduces topology changes to a previously proposed averaged model that results in much improved simulation for such conditions. This paper also shows that the model can be used effectively to study HVDC grids with significant time savings.
机译:本文研究了基于电压源转换器的高压直流(VSC-HVDC)电网中运行的模块化多电平转换器(MMC)的均值模型(AVM)的适用性。通过与详细的电网电磁瞬态模型(包括完整的MMC模型)进行比较,对AVM模型进行了基准测试。分析结果表明,只要电容器大到足以在每个MMC子模块上保持几乎恒定的电压,AVM才有效。本文还显示,以前开发的MMC平均模型无法准确模拟直流故障条件下的瞬变。本文将拓扑更改引入到先前提出的平均模型中,从而导致针对这种情况的仿真大大改善。本文还表明,该模型可以有效地用于研究HVDC电网,并节省大量时间。

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