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Method of Recloser-Fuse Coordination in a Power Distribution System With Superconducting Fault Current Limiter

机译:具有超导故障限流器的配电系统中的重合闸-熔断协调方法

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In this paper, we analyzed recloser to fuse protective coordination when superconducting fault current limiters (SFCL) are applied into power distribution system. Generally, fuses are installed at more remote position from substation than reclosers. Thus, when instantaneous faults occur at the point behind the fuse, the fuse doesn't melt because the recloser removes the fault by reclosing operation. When permanent faults occur, the fuse has to melt just before the last delay trip of the recloser in order to prevent the loads between the recloser and the fuse to be interrupted. However, in power distribution system with SFCL, the fault current is decreased by the effect of the impedance of the SFCL. In this case, when a permanent fault occurs, the fuse may not melt during the delay operation of the recloser because of the insufficient heat from the decreased current. As a result, the recloser is locked-out and the loads between the recloser and the fuse are interrupted unnecessarily.
机译:在本文中,我们分析了将超导故障限流器(SFCL)应用于配电系统时的重合器熔断器保护协调功能。通常,保险丝安装在离变电站比重合器更远的位置。因此,当在熔断器后面的点处发生瞬时故障时,熔断器不会熔化,因为重合闸通过重合闸操作消除了故障。当发生永久性故障时,保险丝必须在重合闸的最后延迟跳闸之前熔化,以防止重合闸和保险丝之间的负载中断。但是,在具有SFCL的配电系统中,故障电流会因SFCL的阻抗而降低。在这种情况下,当发生永久性故障时,由于电流降低导致热量不足,在重合闸的延迟操作期间,保险丝可能不会熔化。结果,重合器被锁定并且重合器和保险丝之间的负载被不必要地中断。

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