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Current Limiting Characteristics of Inductive Type SCFCL With ZnO Device and Resistor in Parallel

机译:带有ZnO器件和电阻器的电感型SCFCL的并联限流特性

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A new FCL system which consists of a L-type SCFCL in parallel with a resistor and a ZnO device is proposed. The proposed system limits the fault current inductively and also consumes excessive energy like R-type ones. A model system was made and studied experimentally. The ZnO device is off-state in stand-by mode. When a fault occurs, the SCFCL turns into current limiting mode and has high impedance. The voltage across the SCFCL exceeds a threshold voltage of the ZnO device. During one cycle of the voltage, the ZnO device is on-state around the peak of the voltage, and the current flows through both the SCFCL and the resistor. A certain amount of excessive energy is dissipated in the resistor. The ZnO device is off-state around the peak of the current which is suppressed only by the L-type SCFCL. Finally the proposed FCL system switches L-type and L+R-type in a cycle. Relations among the threshold voltage, the current limiting impedance and the resistance of the resistor were discussed. It was confirmed the proposed FCL system represents desirable current limiting characteristics.
机译:提出了一种新的FCL系统,该系统由L型SCFCL与电阻器和ZnO器件并联组成。拟议的系统感应地限制故障电流,并且像R型一样消耗过多的能量。建立了模型系统并进行了实验研究。 ZnO器件在待机模式下处于关闭状态。发生故障时,SCFCL会进入电流限制模式并具有高阻抗。 SCFCL两端的电压超过ZnO器件的阈值电压。在一个电压周期内,ZnO器件在电压峰值附近处于导通状态,并且电流流过SCFCL和电阻器。电阻中会耗散一定量的多余能量。 ZnO器件在电流峰值附近处于截止状态,这仅由L型SCFCL抑制。最后,所提出的FCL系统在一个周期内切换L型和L + R型。讨论了阈值电压,限流阻抗和电阻电阻之间的关系。可以确认,提出的FCL系统具有理想的限流特性。

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