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Improved Thevenin Equivalent Model of MMC Considering Pre-charge Conditions and DC Side Fault Conditions

机译:考虑预充电条件和直流侧故障条件,改进了MMC等效模型

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摘要

The traditional Thevenin equivalent Modular Multilevel Converter (MMC) model has poor versatility for the two working conditions of pre-charging and DC-side faults. In this paper, an improved Thevenin equivalent MMC model considering pre-charge conditions and DC side fault conditions is proposed. The model divides the pre-charging condition into a Controllable charging stage and an Uncontrollable charging stage. The DC-side fault condition is divided into the pre-blocking and post-blocking conditions of the converter. The circuit characteristics are analyzed, and the equivalent model topology is comprehensively improved to make it suitable for full-condition simulation, and a control strategy suitable for the equivalent model is proposed. The detailed model and the proposed improved equivalent model were built in PSCAD/ EMTDC for comparison and analysis. The simulation results shows that the improved equivalent model can be applied to various working conditions, and the versatility of the traditional Thevenin equivalent model is improved.
机译:传统的近距离临时模块化多电平转换器(MMC)模型对于预充电和DC侧断层的两个工作条件具有差的多功能性。在本文中,提出了一种改进的临时等效MMC模型,考虑预充电条件和直流侧故障条件。该模型将预充电条件划分为可控充电阶段和无法控制的充电阶段。 DC侧故障状况分为转换器的预堵塞和阻止条件。分析电路特性,并综合改进了等效的模型拓扑,以使其适用于全部状况模拟,并且提出了适合于等效模型的控制策略。在PSCAD / EMTDC中建立了详细的模型和所提出的改进的等效模型,以进行比较和分析。仿真结果表明,改进的等效模型可以应用于各种工作条件,并且改善了传统的临时等同模型的多功能性。

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