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Three-winding coreless superconducting fault current limiter

机译:三绕无芯超导故障电流限制器

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Fault current is one of the basic threats to the elements of power systems. Fault current flow can cause thermal and dynamic harmful effects on the operation of power equipment. An ideal fault current limiter is required to have zero impedance at work currents and substantial impedance in short-circuit conditions. These requirements are met by superconducting fault current limiters which use the phenomenon of transition of a superconducting material from the superconducting state to the resistive state as a results of exceeding the critical current Ic of the superconducting material [1]–[3]. An inductive fault current limiter is a triple-winding construction consisting of two superconducting windings and one copper winding, which are magnetically coupled with each other. Both superconducting windings are wound simultaneously on one carcass, which allows to obtain a very large magnetic coupling coefficient between the windings, minimize the dispersion reactance of the limiter, which in turn minimizes the voltage at the limiter in the waiting state. The limiter is lightweight due to its coreless design and cryogenic cooling of the copper winding.
机译:故障电流是电力系统元素的基本威胁之一。故障电流流动可能导致热量和动态有害影响电力设备的运行。理想的故障电流限制器需要在工作电流下具有零阻抗,并且在短路条件下具有大量阻抗。这些要求是由超导它们使用的超导材料的转变的现象从超导状态向电阻状态为超过临界电流I的结果故障限流器满足 c 超导材料[1] - [3]。电感故障电流限制器是由两个超导绕组和一个铜绕组组成的三绕组结构,其彼此磁耦合。两个超导绕组在一个胎体上同时缠绕,这允许在绕组之间获得非常大的磁耦合系数,最小化限制器的色散电抗,这又最小化了等待状态下限制器处的电压。由于其无芯设计和铜绕组的低温冷却,限制器是重量轻。

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