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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Analysis of Fault Current Limiting Characteristics According to the Fault Angle in an Integrated Three-Phase Flux-Lock Type Superconducting Fault Current Limiter
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Analysis of Fault Current Limiting Characteristics According to the Fault Angle in an Integrated Three-Phase Flux-Lock Type Superconducting Fault Current Limiter

机译:三相磁通锁定型超导故障限流器中基于故障角的故障限流特性分析

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The integrated three-phase flux-lock type superconducting fault current limiter (SFCL) consists of three-phase flux-lock reactor wound on an iron core with the same turn''s ratio between the primary coils and the secondary coils for each phase. When a SFCL is operating under normal condition, and assuming that the leakage flux is neglected, the magnetic flux generated between the primary and the secondary coils of each phase is canceled out perfectly. Therefore, the impedance of the SFCL is zero and the power system can operate normally without any loss. However, when a fault occurs, quench happens in high-TC superconducting (HTSC) elements and the magnetic flux generates in an iron core. Therefore, the impedance of the SFCL is large enough to limit fault currents. In this paper, we investigated the fault current limiting characteristics according to the fault angle in SFCL in fault types such as the single-line-to-ground fault, the double-line-to-ground fault and the triple-line-to-ground fault. Experiment results show that the fault current limiting characteristics of the SFCL are dependant on the quench characteristics of HTSC elements in each phase.
机译:集成式三相磁通锁定型超导故障电流限制器(SFCL)由缠绕在铁芯上的三相磁通锁定电抗器组成,每个相的初级线圈和次级线圈之间的匝数比相同。当SFCL在正常条件下运行时,假设漏磁通被忽略,则各相的初级线圈和次级线圈之间产生的磁通量会被完美抵消。因此,SFCL的阻抗为零,电源系统可以正常运行而不会造成任何损失。但是,当发生故障时,高TC超导(HTSC)元件会发生失超,并且铁芯中会产生磁通量。因此,SFCL的阻抗足够大以限制故障电流。本文针对单线接地故障,双线接地故障和三线接地故障等故障类型,根据SFCL中的故障角度研究了故障电流限制特性。接地故障。实验结果表明,SFCL的故障限流特性取决于每个相中HTSC元件的失超特性。

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