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Resistive Type Superconducting Fault Current Limiter and Current Flowing Time

机译:电阻式超导故障电流限制器和电流流动时间

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Superconducting fault current limiter (SFCL) is an alternative to solve the problems associated with the increasing fault current levels. For conventional resistive type SFCLs, the current flowing time of superconducting coil is usually more than 50 ms (depending upon the interruption time of circuit breaker). However, in an improved YBCO-type resistive SFCL, the current flowing time of superconducting coil is only 10 ms (current through superconducting coil can be interrupted by a fast opening switch). The difference of these two designs and the effect on the design of SFCLs are not investigated yet. This paper mainly compares the characteristics of the resistive type SFCL with different current flowing time. Experimental results showed that, with a 250 A current passing by, the resistance of superconducting tape with 10 ms-design and 50 ms-design are respectively 30 mΩ/m and 80 mΩ/m. Meanwhile, the current withstand ability (according to recovery time within 250 ms) are respectively 465 A for 10 ms-design and 272 A for 50 ms-design. Estimation about the demand of superconducting tapes between two types of resistive type SFCLs with different current flowing time was done. Calculation results showed that the improved resistive type SFCL with 10 ms-design only need 1/4th length of superconducting coil used in 50 ms-design.
机译:超导故障电流限制器(SFCL)是解决与增加故障电流水平相关的问题的替代方案。对于传统的电阻型SFCLS,超导线圈的电流流动时间通常大于50ms(取决于断路器的中断时间)。然而,在改进的YBCO型电阻SFCL中,超导线圈的电流流动时间仅是10ms(通过超导线圈的电流可以被快速开关中断)。尚未研究这两个设计的差异和对​​SFCLS设计的影响。本文主要比较不同电流流动时间的电阻型SFCL的特性。实验结果表明,具有250个通过的电流,具有10ms设计和50ms设计的超导带的电阻分别为30mΩ/ m和80mΩ/ m。同时,电流耐受能力(根据250毫秒内的恢复时间)分别为465A,用于10毫米设计,272A为50毫米设计。对不同电流流动时间的两种电阻型SFCL之间的超导带之间的需求进行估计。计算结果表明,具有10毫米设计的改进的电阻型SFCL仅需要50 ms设计中使用的1/4长度的超导线圈。

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