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Impedance variation of a flux-lock type SFCL dependent on winding direction between coil 1 and coil 2

机译:磁通锁定型SFCL的阻抗变化取决于线圈1和线圈2之间的缠绕方向

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摘要

The flux-lock type superconducting fault current limiter (SFCL) uses the magnetic coupling between two coils connected in parallel with each other. This SFCL has the merit that both the resistance of high-TC superconducting (HTSC) element and the limiting current capacity can be simultaneously increased through the application of magnetic field into HTSC element. However, unlike other types SFCLs, the different fault current limiting characteristics can appear according to the winding direction between the two coils. In this paper, the relation of the impedance of the flux-lock type SFCL with the resistance of HTSC element was derived from its equivalent circuit using the current and the voltage relationship between the two coils. The limiting impedances of the flux-lock type SFCL due to the winding direction through the discrete fourier transform (DFT) analysis for the voltage and the current data obtained from the fault current limiting experiments were extracted and analyzed from the point of view of the limited line current and the resistance of HTSC element.
机译:磁通锁定型超导故障电流限制器(SFCL)使用彼此并联连接的两个线圈之间的磁耦合。该SFCL的优点在于,通过在HTSC元件中施加磁场,可以同时增加高TC超导(HTSC)元件的电阻和极限电流容量。但是,与其他类型的SFCL不同,根据两个线圈之间的绕组方向会出现不同的故障电流限制特性。本文利用两个线圈之间的电流和电压关系,从其等效电路推导了磁通锁定型SFCL的阻抗与HTSC元件的电阻的关系。通过从故障限流实验中获得的电压和电流数据的离散傅里叶变换(DFT)分析,通过绕线方向提取了磁通锁定型SFCL的极限阻抗,并从极限角度出发进行了分析。线电流和HTSC元件的电阻。

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