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Design and test of modified bridge type superconducting fault current limiter with reverse magnetized core

机译:改进型带反磁芯桥式超导故障限流器的设计与试验

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To develop a DC reactor type Superconducting Fault Current Limiter (SFCL), the most important elements are superconducting magnets or inductors. Recently large size magnets have been developed, according with the improvement of high temperature superconducting wire. In the DC reactor type SFCL, the purpose of a magnet is to store the generated electric energy of the power system immediately after a fault. Therefore most inductors are designed with an air core since the magnetic core inductor is too easy saturated to absorb the energy. Therefore the inductor consumes so much superconducting wire to make a large inductance and these expensive coils are a weak point of the DC reactor type SFCL. To solve this problem, the Reverse Magnetization Bias (RMB) method is introduced. The energy capacity of magnetic core is expanded to several times. With a shorter length of HTC superconducting wire, a much improved effect was obtained in the 40 V prototype SFCL.
机译:要开发直流电抗器类型的超导故障限流器(SFCL),最重要的元素是超导磁体或电感器。最近,随着高温超导线材的改进,已经开发出大尺寸的磁体。在SFCL型直流电抗器中,磁铁的作用是在发生故障后立即存储电力系统产生的电能。因此,大多数电感器都设计有空芯,因为磁芯电感器太容易饱和而无法吸收能量。因此,电感器消耗了太多的超导线材以产生较大的电感,并且这些昂贵的线圈是DC电抗器类型SFCL的弱点。为了解决这个问题,引入了反向磁化偏置(RMB)方法。磁芯的能量容量扩展了数倍。使用较短的HTC超导线,可以在40 V原型SFCL中获得大大改善的效果。

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