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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Operating Performance of the Flux-Lock and the Transformer Type Superconducting Fault Current Limiter Using the YBCO Thin Films
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Operating Performance of the Flux-Lock and the Transformer Type Superconducting Fault Current Limiter Using the YBCO Thin Films

机译:使用YBCO薄膜的磁通锁和变压器类型超导故障限流器的工作性能

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The operating characteristics of the flux-lock and the transformer type superconducting fault current limiters (SFCLs) have been tested and compared each other. The SFCLs are composed of the primary and secondary coils and the YBCO thin film as a current limiting unit. The turn ratios between the primary and secondary windings were 63:21 and 63:42, respectively. The winding direction between the primary and secondary windings was subtractive. When a fault occurred under the same conditions, the line current was limited more effectively in the transformer type SFCL. That is, the current value of the flux-lock type SFCL was approximately 2 times as high as that of the transformer type SFCL at the turn ratio of 63:42. However, the flux flowing into the iron core of the flux-lock type was less saturated than in the transformer type due to its flux distribution. The resistance generated in the YBCO thin film was higher in the flux-lock type where its voltage was also higher because of the winding direction between the primary and secondary windings. The initial limiting current of the flux-lock type was 2 times as high as that of the transformer type at the turn ratio of 63:42. The power consumed in the YBCO thin film of the transformer type was also remarkably low because the resistance, the current, and the voltage of the YBCO thin film are all lower. Consequently, we found that the transformer type had advantages for the current limiting effect and power burden of the YBCO thin film.
机译:磁通锁和变压器型超导故障电流限制器(SFCL)的工作特性已经过测试并相互比较。 SFCL由初级和次级线圈以及作为电流限制单元的YBCO薄膜组成。初级绕组和次级绕组之间的匝数比分别为63:21和63:42。初级绕组和次级绕组之间的绕组方向为减法。在相同条件下发生故障时,SFCL型变压器会更有效地限制线路电流。即,在63:42的匝数比下,磁通锁定型SFCL的电流值约为变压器型SFCL的电流值的2倍。但是,由于磁通量的分布,流入磁通锁定型铁心的磁通比变压器型磁通饱和的饱和度低。 YBCO薄膜中产生的电阻在磁通锁定型中较高,在该类型中,由于初级绕组和次级绕组之间的绕组方向,其电压也较高。匝数比为63:42时,磁通锁定型的初始极限电流是变压器型初始极限电流的2倍。由于YBCO薄膜的电阻,电流和电压均较低,因此在变压器类型的YBCO薄膜中消耗的功率也非常低。因此,我们发现变压器类型在YBCO薄膜的电流限制效果和功率负担方面具有优势。

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