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Fault current limiting characteristics due to winding direction between coil 1 and coil 2 in a flux-lock type SFCL

机译:磁通锁定型SFCL中由于线圈1和线圈2之间的缠绕方向而引起的故障电流限制特性

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The flux-lock type high-T-c. superconducting fault current limiter (SFCL) has different fault current limiting characteristics according to the winding direction between coil 1 and coil 2. In this paper, the fault current limiting characteristics and the resistance of high-T-c superconducting (HTSC) element in the flux-lock type SFCL without the 3rd winding due to the winding direction were analyzed based on the equivalent circuit with the magnetization branch. In addition, we investigated the fault current limiting characteristics of it along the number of turns of coil 2 with the fixed number of turns of coil 1 through the fault current limiting experiments. In case that coil 1 was wound to the same winding direction as coil 2, or, subtractive polarity winding, the more the number of turns in coil 2 for the fixed turns of coil 1, the higher the resistance of HTSC element and the limited line current. On the other hand, the additive polarity winding case, which coil 1 was wound to the reverse winding direction of coil 2, showed the opposite operational characteristics to the case of the subtractive polarity winding. The experimental results for each winding direction were well coincided with the analyzed ones from the equivalent circuit. (C) 2004 Elsevier B.V. All rights reserved.
机译:磁通锁式高T-c。根据线圈1和线圈2之间的绕线方向,超导故障电流限制器(SFCL)具有不同的故障电流限制特性。本文中,故障电流限制特性和高Tc超导(HTSC)元件在磁通量中的电阻基于带有磁化支路的等效电路,分析了由于绕线方向而没有第三绕线的锁定型SFCL。此外,我们通过故障电流限制实验研究了在线圈1的匝数固定的情况下,线圈2的故障电流限制特性。如果将线圈1缠绕在与线圈2相同的缠绕方向上,或者用减法极性缠绕,则对于线圈1的固定匝数,线圈2的匝数越多,则HTSC元件的电阻和限制线越高当前。另一方面,沿线圈2的反向缠绕方向缠绕线圈1的加性极性绕组外壳显示出与减性极性绕组情况相反的工作特性。每个绕组方向的实验结果与等效电路的分析结果完全吻合。 (C)2004 Elsevier B.V.保留所有权利。

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