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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Experiment using variable reactor of rectifier type superconducting fault current limiter with a short-circuited trigger coil
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Experiment using variable reactor of rectifier type superconducting fault current limiter with a short-circuited trigger coil

机译:带有短路触发线圈的整流器型超导故障限流器可变电抗器的实验

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摘要

A rectifier type superconducting fault current limiter using an additional short-circuited trigger coil has been studied. Such reactor consists of two well-coupled superconducting coils; the main coil and trigger coil. The main coil is connected to the DC link of the bridge circuit while the trigger winding is always short-circuited. As the trigger coil is short-circuited the reactor shows low inductance in normal operation. A change of load current due to load change or some other reasons increase the short-circuit current but inductance value remains unchanged as long as the trigger coil remains in superconducting state. During fault time, the fault current yields super to normal transition current in the secondary (trigger) winding and the trigger coil quenches. Thus higher impedance appears in the main coil that limits the fault current. The advantage of using an additional trigger coil with the main coil is that it reduces the impedance of the current limiter at normal operation and therefore reduces voltage drop across the limiter. To enhance the coupling factor of the windings iron core can be used. If the magnetic path is closed with the iron core even with some air gap it can be saturated during fault time because of the high DC current but would effectively reduce leakage reactance during normal operation. In this paper a small-scale experimental result of this type of current limiter has been presented.
机译:已经研究了使用附加的短路触发线圈的整流器型超导故障限流器。这种电抗器由两个耦合良好的超导线圈组成。主线圈和触发线圈。主线圈连接到桥式电路的直流母线,而触发绕组始终短路。由于触发线圈短路,电抗器在正常运行中显示出低电感。由于负载变化或其他一些原因而导致的负载电流变化会增加短路电流,但只要触发线圈保持超导状态,电感值便保持不变。在故障时间内,故障电流会在次级(触发)绕组中产生超过正常过渡电流的电流,并且触发线圈会失超。因此,较高的阻抗出现在主线圈中,从而限制了故障电流。与主线圈一起使用附加触发线圈的优势在于,它可以降低正常操作时限流器的阻抗,从而减少限流器两端的电压降。为了提高绕组的耦合系数,可以使用铁芯。如果即使有一定的气隙,也用铁芯封闭磁路,由于直流电流较高,在故障时磁路可能会饱和,但会在正常运行期间有效降低漏电抗。在本文中,提出了这种电流限制器的小规模实验结果。

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