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Active control of current distribution and stability of superconducting magnet by subdividing the conductor

机译:通过细分导体主动控制超导磁体的电流分布和稳定性

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Non-uniform current distribution in super-conducting magnet conductor causes serious deterioration of stability and increase in pulse field loss especially in large-scale conductors. To clear those problems we proposed the parallel sub-conductor system in which the main conductor was subdivided into sub-conductors arranged in parallel. Each of the sub-conductors is electrically insulated from the others and connected to an individual power supply. With this arrangement the current of each sub-conductor can be controlled separately and the current distribution in the sub-conductors can be actively controlled. We performed an experiment using a magnet wound of four-parallel sub-wires and demonstrated that the current distribution was quickly controlled and the magnet was actively stabilized by transferring the current from quenching sub-wire to the other sub-wires.
机译:特别是在大型导体中,超导磁体导体中电流分布不均匀会导致稳定性严重下降,脉冲场损耗增加。为了解决这些问题,我们提出了将主导体细分为并联布置的子导体的并联子导体系统。每个子导体彼此绝缘,并连接到单独的电源。通过这种布置,可以分别控制每个子导体的电流,并且可以主动地控制子导体中的电流分布。我们使用四根平行子线绕制的磁体进行了实验,结果表明,通过将电流从淬灭子线传递到其他子线,可以快速控制电流分布并有效地稳定了磁体。

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