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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Study on Peak Current Limiting Characteristics of a Flux-Lock Type SFCL Using Its Third Winding
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Study on Peak Current Limiting Characteristics of a Flux-Lock Type SFCL Using Its Third Winding

机译:利用第三绕组研究磁锁型SFCL的峰值电流限制特性

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摘要

Generally, the peak amplitude of the fault current after the fault occurrence depends on the transient component of the fault current, which is determined by the fault condition such as the fault angle. In the suggested flux-lock type superconducting fault current limiter (SFCL), the fault current of the lower peak amplitude causes the only high-${rm T}_{rm C}$ superconducting (HTSC) element connected in series with one of two coils comprising the flux-lock type SFCL to be quenched, which the fault current can be limited by the lower limiting impedance of the flux-lock type SFCL. On the other hand, the fault current with the higher peak amplitude makes another HTSC element connected with the third winding to be quenched after the HTSC element connected in series with one of the SFCL's two coils is quenched, which contributes to the higher limiting impedance of this SFCL. Therefore, the effective fault current limiting operation of the flux-lock type SFCL can be performed by generating the SFCL's limiting impedance in proportion to the peak amplitude of the fault current. To confirm the current limiting operation of the proposed flux-lock type SFCL, the short-circuit tests of the flux-lock type SFCL using its third winding according to the fault angle were carried out and its effective fault current limiting operations were discussed.
机译:通常,故障发生后故障电流的峰值幅度取决于故障电流的瞬态分量,该瞬态分量由故障条件(例如故障角度)确定。在建议的磁通锁定型超导故障电流限制器(SFCL)中,峰值电流较低的故障电流会导致唯一的高$ {rm T} _ {rm C} $超导(HTSC)元件与以下之一串联连接两个包含要淬火的磁通锁定型SFCL的线圈,故障电流可以通过磁通锁定型SFCL的下限阻抗来限制。另一方面,具有较高峰值幅度的故障电流会使与第三绕组连接的另一个HTSC元件在与SFCL的两个线圈之一串联连接的HTSC元件被淬灭之后被淬火,这有助于提高SFCL的极限阻抗。此SFCL。因此,通过产生与故障电流的峰值幅度成比例的SFCL的极限阻抗,可以执行磁通锁定型SFCL的有效故障电流极限操作。为了确定所提出的磁通锁定型SFCL的限流操作,根据故障角度对使用第三绕组的磁通锁定型SFCL进行了短路测试,并讨论了其有效的故障限流操作。

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