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Comparison between separated and not separated positive and negative sequence control in a high voltage direct current transmission system during unbalanced grid faults

机译:电网不平衡故障时高压直流输电系统中分离和未分离的正序和负序控制的比较

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Especially during unbalanced grid faults the behavior of voltage source converter based generation or transmission units is highly dependent on the implemented control of the converter. For the control strategy of the converter the two general alternatives are on the one hand a separated control of positive and negative sequence quantities and on the other hand a not separated control in which voltages and currents are not decomposed in the symmetrical components.Furthermore the quickness of the converter control allows the injection of reactive current during grid faults in order to stabilize the voltage locally. The possibilities and limitations of this so called dynamic voltage control depend highly on the implemented control strategy as well.In this publication the advantages and disadvantages of the two control strategies with separated and not separated positive and negative sequence are explained and demonstrated during an unbalanced grid fault. For this an AC-DC hybrid transmission test system in which the converter control of the high voltage direct current transmission system is equipped with both control strategies forms the basis for this comparison.
机译:特别是在电网不平衡故障期间,基于电压源转换器的发电或输电单元的行为高度依赖于转换器的已实现控制。对于转换器的控制策略,两种通用的选择是,一方面是对正序量和负序量的分离控制,另一方面是不分离的控制,其中电压和电流不会在对称组件中分解。变流器控制的功能允许在电网故障期间注入无功电流,以便局部稳定电压。这种所谓的动态电压控制的可能性和局限性在很大程度上也取决于所实施的控制策略。在本出版物中,在不平衡电网中解释并演示了两种控制策略的优缺点,它们分别具有正序和负序。故障。为此,AC-DC混合传输测试系统在高压直流输电系统的变流器控制中均配备了两种控制策略,构成了该比较的基础。

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