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Transformer inrush mitigation for dynamic voltage restorer using direct flux linkage control

机译:使用直接磁链控制的动态电压恢复器变压器浪涌抑制

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摘要

Dynamic voltage restorer (DVR) based on transformer-coupled topology is the most cost-effective solution to protect consumer from voltage sags. However, an important issue about this topology is the transformer saturation. Magnetic saturation of the transformer will generate large inrush current which may greatly distort the compensation voltage or even trigger the over-current protection. To prevent the transformer from saturation, this study proposes a novel direct magnetising flux linkage control strategy. Distinguished from existing DVR models which ignored the transformer magnetising branch, this study establishes a comprehensive DVR model by adopting the magnetising flux linkage as a state-variable. Therefore, by adopting flux linkage feedback, the magnetising flux linkage would be directly controlled. Otherwise, to implement the flux linkage control, this study proposes a robust flux estimation method to carry out the proposed control scheme. Finally, the whole system is verified on a 380 V/10 kVA three-phase experimental DVR prototype.
机译:基于变压器耦合拓扑的动态电压恢复器(DVR)是保护消费者免受电压骤降影响的最具成本效益的解决方案。但是,有关此拓扑的一个重要问题是变压器饱和。变压器的磁饱和会产生较大的浪涌电流,这可能会大大补偿补偿电压,甚至触发过电流保护。为了防止变压器饱和,本研究提出了一种新颖的直接励磁磁链控制策略。与忽略变压器励磁分支的现有DVR模型不同,本研究通过将励磁磁链作为状态变量,建立了一个全面的DVR模型。因此,通过采用磁链反馈,将直接控制磁化磁链。否则,为实现磁链控制,本研究提出了一种鲁棒的磁链估计方法来实施所提出的控制方案。最后,整个系统在380 V / 10 kVA三相实验DVR原型上进行了验证。

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