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Design, fabrication and testing of superconducting DC reactor for 1.2 kV/80 A inductive fault current limiter

机译:用于1.2 kV / 80 A感应故障限流器的超导直流电抗器的设计,制造和测试

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A superconducting DC reactor protects a power system by limiting the amplitude of fault current with its inductance. Therefore, it is very important to design and simulate the DC reactor precisely for making the power system stable and effective. In this paper, we designed the superconducting DC reactor of an inductive superconducting fault current limiter conceptually and acquired the optimal design parameters by using Finite Element Method (FEM). We manufactured the superconducting DC reactor and tested its characteristics at cryocooler-cooled 20 K temperature. Moreover, we compared experimental characteristics with simulation results and analyzed them. We introduced the design method of the superconducting DC reactor and the fabrication method of a 1.2 kV/80 A class DC reactor for an inductive superconducting fault current limiter. Finally, we performed the short circuit test and discussed the results.
机译:超导直流电抗器通过用其电感限制故障电流的幅度来保护电力系统。因此,精确设计和仿真直流电抗器对于使电力系统稳定有效是非常重要的。在本文中,我们从概念上设计了感应超导故障限流器的超导直流电抗器,并使用有限元方法(FEM)获得了最佳设计参数。我们制造了超导直流电抗器,并在低温冷却器20 K温度下测试了其特性。此外,我们将实验特性与仿真结果进行了比较并进行了分析。介绍了用于电感式超导故障限流器的超导直流电抗器的设计方法和1.2 kV / 80 A级直流电抗器的制造方法。最后,我们进行了短路测试并讨论了结果。

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