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Determination of equivalent circuit parameters of the low-T/sub c/ superconducting power supply for charging of superconducting magnet

机译:确定用于超导磁体充电的低T / sub c /超导电源的等效电路参数

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This paper deals with determination of equivalent circuit parameters of the Low-T/sub c/ Superconducting (LTS) power supply for charging of the LTS magnet, as well as analysis of its characteristics as determined through experiments. The power supply consists of two exciters, a rotor, a stator, and an LTS magnet. In this experiment, a 25.8 mH LTS magnet was used, and rotor revolutions from 30 to 300 rpm were used. The magnetic flux distribution analysis of the system was carried out. Based upon this analysis, maximum 150 A DC excitation current was optimally derived. In order to measure the pumping-current with respect to the magnet flux changes, a Hall sensor was installed at the center of the LTS magnet. The experimental observations have been compared with the theoretical predictions. In this experiment, the pumping-current has reached about 372 A.
机译:本文讨论了用于LTS磁体充电的Low-T / sub c /超导(LTS)电源的等效电路参数的确定,以及通过实验确定的特性分析。电源由两个励磁机,一个转子,一个定子和一个LTS磁体组成。在此实验中,使用了25.8 mH的LTS磁体,并使用了从30到300 rpm的转子转速。进行了系统的磁通分布分析。根据此分析,可以最佳地得出最大150 A的直流励磁电流。为了测量相对于磁通量变化的泵浦电流,在LTS磁体的中心安装了一个霍尔传感器。实验观察结果已与理论预测进行了比较。在此实验中,泵浦电流已达到约372A。

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