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A two-phase full-wave superconducting rectifier

机译:两相全波超导整流器

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A two-phase full-wave superconducting rectifier has been developed as a small cryogenic power supply of superconducting magnets for magnetically levitation trains. Those magnets will be operated in the persistent current mode. However, small ohmic loss caused at resistive joints, and AC loss induced by the vibration of the train cannot be avoided. Therefore, the low-power cryogenic power supply will be required to compensate for the reduction in magnet current. The superconducting rectifiers consists of two identical full-wave rectifiers connected in series. The main components of each rectifier are a toroidal superconducting setup transformer and two thermally controlled switches. The test results using a 47.5-mH-load magnet at 0.2 Hz and 0.5 Hz operations are described. To estimate the characteristics of the superconducting rectifier, the authors have developed a simulation code. From the experiments and the simulations, the transfer efficiency is determined.
机译:已经开发出一种两相全波超导整流器,作为用于磁悬浮列车的超导磁体的小型低温电源。这些磁铁将在持续电流模式下运行。但是,无法避免在电阻性接头处产生小的欧姆损耗,以及因列车振动而引起的交流损耗。因此,将需要低功率低温电源来补偿磁体电​​流的减小。超导整流器由串联连接的两个相同的全波整流器组成。每个整流器的主要组件是一个环形超导设置变压器和两个热控开关。描述了使用负载为47.5-mH的磁体在0.2 Hz和0.5 Hz下的测试结果。为了估算超导整流器的特性,作者开发了仿真代码。通过实验和模拟,确定了转移效率。

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