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Progress of DC Quench Protection Switch for Superconducting Fusion Reactors

机译:超导聚变反应堆直流淬火保护开关的研究进展

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The superconducting magnets are the most expensive and important components for a magnetic confinement thermonuclear fusion device. The high-intensity magnetic fields produced by high density DC current are used to confine and shape the high-temperature plasma in experiments. Therefore, the study of DC quench protection switches is extremely necessary and meaningful for the safety operation of superconducting magnets. Different types of switch have been studied based on various circuit requirements and parameters, such as interruption time, current and voltage. This paper reviewed the developing process of quench protection switch and summarized the respective characteristics of direct interruption commutation switch, artificial zero-crossing commutation switch and full-controlled active commutation switch. Finally, the paper expounded the recent development of three-level contacts hybrid DC breaker technology for next generation fusion reactor.
机译:对于磁约束热核聚变装置,超导磁体是最昂贵和最重要的组件。由高密度直流电流产生的高强度磁场在实验中用于限制和塑造高温等离子体。因此,研究直流失超保护开关对于超导磁体的安全运行是极为必要和有意义的。已经根据各种电路要求和参数(例如中断时间,电流和电压)研究了不同类型的开关。本文回顾了失超保护开关的发展过程,总结了直接中断换向开关,人工过零换向开关和全控有源换向开关的特点。最后,本文阐述了用于下一代聚变反应堆的三级接触式混合直流断路器技术的最新发展。

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