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Equal current distribution in parallel circuits of resistive superconducting fault current limiters using multiple superconducting inter-phase transformers

机译:使用多个超导相间变压器的电阻式超导故障限流器并联电路中的均流

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Differences in impedances of the superconducting parallel circuits during normal operations cause unequal distribution of currents in the circuits, resulting in quench or loss in certain superconducting parts. However, those impedances are so small that they are hardly controllable. To solve this problem, attempted were such measures as inserting resistors or inductors into each of the parallel circuits in series. This leaves extra losses due to resistance or reactance. In this study, we proposed a multiple superconducting inter-phase-transformers (SIPT) for the equal current distribution in superconducting parallel circuits and investigated their performance. SIPTs were fabricated using double pancake windings of BSCCO-2223 HTS tapes and were applied to parallel circuits of resistive superconducting fault current limiters (SFCLs). Results showed that the SIPTs effectively made the current distribution uniform in superconducting parallel circuits that had unequal resistances. In addition, the secondary loop configuration with air-core SIPTs was suggested as the most efficient for the SFCLs.
机译:在正常操作期间,超导并联电路的阻抗差异会导致电路中电流分布不均,从而导致某些超导部件失超或损耗。但是,这些阻抗是如此之小,以至于它们几乎不可控。为了解决这个问题,尝试了诸如在串联的每个并联电路中插入电阻器或电感器的措施。由于电阻或电抗会留下额外的损失。在这项研究中,我们提出了一种用于超导并联电路中相等电流分布的多重超导相间变压器(SIPT),并研究了它们的性能。 SIPT是使用BSCCO-2223 HTS胶带的双薄煎饼绕组制造的,并已应用于电阻式超导故障限流器(SFCL)的并联电路中。结果表明,SIPT在电阻不相等的超导并联电路中有效地使电流分布均匀。此外,建议将带有空心SIPT的次级回路配置作为SFCL的最有效方法。

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