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首页> 外文期刊>IEEE Transactions on Power Systems >Electromechanical Transient Modeling of Modular Multilevel Converter Based Multi-Terminal HVDC Systems
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Electromechanical Transient Modeling of Modular Multilevel Converter Based Multi-Terminal HVDC Systems

机译:基于模块化多电平转换器的多端子HVDC系统的机电瞬态建模

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摘要

This paper studies the techniques for modeling modular multilevel converter (MMC) based multi-terminal HVDC (MTDC) systems in the electromechanical transient mode. Firstly, the mathematical model of the MMC and its corresponding equivalent circuit are established, which are similar to those of the two level converters. Then, a power flow calculation method for AC/DC systems containing MMC-MTDC systems is developed. Two dynamic models for MMC-MTDC systems are developed in the paper. One is the detailed model, taking into account of the AC side circuit, the inner controllers, the modulation strategies, the outer controllers and the MTDC circuit. The other is the simplified model, which only reserves the outer controllers and partial dynamics of the MTDC circuit based on a quantitative analysis of the detailed model's dynamic processes, and it can be used in electromechanical transient simulation with a larger step size. Both the detailed and the simplified models are implemented on PSS/E and compared with the accurate electromagnetic transient models on PSCAD in a four terminal MMC-MTDC system; the result proves the validity of the developed models. Lastly, a stability study of a modified New England 39-bus system is executed, and the result shows that the AC fault can be isolated well in an MMC-MTDC asynchronously connected AC grid.
机译:本文研究了在机电瞬态模式下基于模块化多电平转换器(MMC)的多端子HVDC(MTDC)系统建模的技术。首先,建立了MMC及其对应的等效电路的数学模型,它们与两电平转换器的数学模型相似。然后,开发了一种包含MMC-MTDC系统的AC / DC系统的潮流计算方法。本文为MMC-MTDC系统开发了两个动态模型。一种是详细模型,其中考虑了交流侧电路,内部控制器,调制策略,外部控制器和MTDC电路。另一个是简化模型,它仅基于详细模型的动态过程的定量分析而保留MTDC电路的外部控制器和部分动力学特性,并且可以用于机电瞬态仿真,步长较大。在四端子MMC-MTDC系统中,详细模型和简化模型均在PSS / E上实现,并与PSCAD上的精确电磁瞬变模型进行比较;结果证明了所建立模型的有效性。最后,对改进后的新英格兰39总线系统进行了稳定性研究,结果表明,在MMC-MTDC异步连接的交流电网中可以很好地隔离交流故障。

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