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Current Limiting Characteristics of a Novel Flux-Coupling Type Superconducting Fault Current Limiter

机译:一种新型的磁通耦合型超导故障限流器的限流特性

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A novel flux-coupling type superconducting fault current limiter (SFCL) is proposed in this paper. This type SFCL is composed of two superconducting coupling coils, a controlled switch and two metal oxide arresters (MOAs). The primary coil and the secondary coil, which are wound in the reverse direction and are respectively in parallel with the two MOAs, are connected in parallel through the controlled switch and a main circuit breaker. Under normal condition, due to the non-inductive coupling characteristics between the two superconducting coils, the impedance of the proposed SFCL will be too small to affect the main circuit. After the fault happens, the controlled switch will be opened from its initial closed state, and meanwhile the MOAs will prevent the two coils from being damaged by the overvoltage caused by the switching operation. Since the flux between the coils cannot cancel out each other, the non-inductive coupling will disappear, and then the limiting impedance will be triggered for current-limitation. In order to evaluate the current-limiting performance of the novel flux-coupling type SFCL, a laboratory scale prototype was made. The two superconducting coils were fabricated with Bi2223/Ag, and an anti-parallel IGBT pair was chosen as the controlled switch. According to the test results, it was found that, the fault current could be limited quickly and effectively, and there was no overvoltage during the operation process of the controlled switch.
机译:提出了一种新型的磁通耦合型超导故障限流器(SFCL)。这种类型的SFCL由两个超导耦合线圈,一个受控开关和两个金属氧化物避雷器(MOA)组成。反向缠绕的初级线圈和次级线圈分别与两个MOA并联,并通过受控开关和主断路器并联连接。在正常情况下,由于两个超导线圈之间的非电感耦合特性,建议的SFCL的阻抗将太小而不会影响主电路。故障发生后,受控开关将从其初始闭合状态断开,同时MOA可以防止两个线圈因开关操作引起的过电压而损坏。由于线圈之间的磁通不能互相抵消,因此非电感耦合将消失,然后将触发限制阻抗以进行电流限制。为了评估新型磁通耦合型SFCL的限流性能,制作了实验室规模的原型。用Bi2223 / Ag制造了两个超导线圈,并选择了反并联IGBT对作为受控开关。根据测试结果,可以快速有效地限制故障电流,并且在受控开关的操作过程中没有过电压。

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