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Non-inductive variable reactor design and computer simulation of rectifier type superconducting fault current limiter

机译:整流器型超导故障限流器的无感可变电抗器设计及计算机仿真

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A rectifier type superconducting fault current limiter with noninductive reactor has been proposed by the authors. The concept behind this SFCL is that the high impedance generated during superconducting to normal state of the trigger coil limits the fault current. In the hybrid bridge circuit of the SFCL, two superconducting coils: a trigger coil and a limiting coil are connected in anti-parallel. Both the coils are magnetically coupled with each other and could have the same value of self inductance so that they can share the line current equally. At fault time when the trigger coil current reaches a certain level, the trigger coil changes from superconducting state to normal state. This super to normal transition of the trigger coil changes the current ratio of the coils and therefore the flux inside the reactor is no longer zero. So, the equivalent impedance of both the coils is increased and limits the fault current. We have carried out computer simulation using PSCAD/EMTDC and observed the results. Both the simulation and preliminary experiment shows good results. The advantage of using hybrid bridge circuit is that the SFCL can also be used as circuit breaker.
机译:作者已经提出了带有无感电抗器的整流器型超导故障限流器。 SFCL背后的概念是,在超导触发线圈正常状态期间产生的高阻抗会限制故障电流。在SFCL的混合桥电路中,两个超导线圈:触发线圈和限制线圈反并联连接。两个线圈彼此磁耦合,并且可以具有相同的自感值,因此它们可以平均分配线路电流。在故障时刻,当触发线圈电流达到一定水平时,触发线圈从超导状态变为正常状态。触发线圈的这种从超到正常的过渡会改变线圈的电流比,因此电抗器内部的磁通不再为零。因此,两个线圈的等效阻抗增加,并限制了故障电流。我们使用PSCAD / EMTDC进行了计算机仿真,并观察了结果。仿真和初步实验均显示出良好的效果。使用混合电桥电路的优势在于,SFCL也可以用作断路器。

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