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Study on uninterrupted switching topology and its control strategy of voltage sag protection

机译:电压暂降保护的不间断开关拓扑及其控制策略研究

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Voltage sag triggered by thunderstrike or short circuit could result in false tripping of AC contactor. Serious consequences, such as unintended shutdown in consecutive industrial manufacturing, would be caused subsequently. Thus, an uninterrupted switching topology of voltage sag protection for AC contactor is proposed in this paper. The proposed topology utilizes the reverse external voltage turn-off characteristic of the thyristors. Therefore the exciting current is consecutive, which ensures the energy source of the contactor to be with enough energy to maintain it closed during the switching procedure between the main control circuit and the alternate control circuit. Accordingly, steady state analysis of AC and DC power supply and the control strategy of dynamic switching process are addressed. Simulations and experiments are conducted simultaneously. The results of the simulations and experiments validate the correctness and feasibility of the proposed topology and its control strategy. The results also provide theoretical and practical references for uninterrupted operation of highly sensitive electrical equipment during continuous manufacturing.
机译:雷击或短路触发的电压骤降可能导致交流接触器误跳闸。随后将导致严重后果,例如在连续的工业生产中意外关闭。因此,本文提出了一种交流接触器电压突降保护的不间断开关拓扑。拟议的拓扑利用了晶闸管的反向外部电压关断特性。因此,励磁电流是连续的,这确保了接触器的能量源具有足够的能量,以在主控制电路和备用控制电路之间的切换过程中保持接触器的闭合状态。因此,提出了交流和直流电源的稳态分析和动态切换过程的控制策略。模拟和实验是同时进行的。仿真和实验结果验证了所提出的拓扑及其控制策略的正确性和可行性。该结果还为连续制造过程中高灵敏度电气设备的不间断运行提供了理论和实践参考。

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