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An improved fast self-healing feeder automation system

机译:改进的快速自修复馈线自动化系统

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摘要

In order to improve the reliability and intelligence of the distributed intelligent feeder automation system with fast self-healing performance, this paper summed up a fault allocation, isolation and restoration principle which adaptive to the open-loop distribution system and closed-loop distribution system. Firstly, the intelligent switch with the fault current which in the allocated fault area should be tripped quickly. Then, three-phase once auto-reclosing will be started, if the transient fault happened in the transmission line, the switch will be reclosed successfully and the distribution network recovered; otherwise the switch will not be reclosed and send the “trip order” message to the neighbor switch which in the allocated fault area, this method can distinguish between transient fault and permanent fault, and reduce the action times of the switch by any possibility. At last, examples are given to illustrate this improved distributed intelligent feeder automation system. It is shown that meaningful fault allocation is achieved even in the case of uncertain fault diagnosis of distribution grids.
机译:为了提高分布式智能馈线自动化系统的快速自愈性能,提高其可靠性和智能性,总结了一种适应于开环配电系统和闭环配电系统的故障分配,隔离和恢复原理。首先,具有故障电流的智能开关应在分配的故障区域迅速跳闸。然后,将启动三相一次自动重合闸,如果输电线路发生暂态故障,则开关将成功重合闸,配电网恢复;否则,该交换机将不会重新合闸并向相邻的交换机发送“跳闸顺序”消息,该消息将在分配的故障区域中进行区分,该方法可以区分瞬时故障和永久性故障,并尽可能减少交换机的动作时间。最后,通过实例说明了这种改进的分布式智能馈线自动化系统。结果表明,即使在配电网故障诊断不确定的情况下,也能实现有意义的故障分配。

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