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智能分布式加电压-时间型双策略就地故障判别方法

Intelligent Distributed Voltage-time Dual Strategy Local Fault Identification Method

  • 摘要:
      目的  针对现有配电自动化技术中单独采用传统就地型故障处理电压-时间型方式或新技术智能分布式的不足,提出一种智能分布式加电压-时间型双策略就地故障区段判别方法。分析了就地型馈线自动化处理故障的特点。
      方法  采用智能分布式作为系统的主保护,在智能分布式主保护失效的情况下,通过变电站延时跳闸,系统失电转为电压-时间型后备保护,逐级合闸进行故障定位、隔离及非故障区段的快速恢复供电全过程。
      结果  试验检测结果表明:智能分布式完成保护的时间小于最大切除时间ΔT1(150 ms),电压-时间型后备保护模式下的过流延时时间定值ΔT2的范围在200~300 ms之间。
      结论  所提方法处理故障的快速性保证了供电可靠性,可在实际配电网的应用中推广。

     

    Abstract: Introduction The paper aims at the shortage of traditional in-situ fault-handling voltage-time mode or new technology intelligent distribution in the existing distribution automation technology, an intelligent distributed voltage-time dual strategy local fault segment discrimination method is proposed. The characteristics of automatic fault handling of in-situ feeders are analyzed.
      Method  Intelligent distributed was adopted as the main protection of the system. In the case of the failure of the intelligent distributed primary protection, the system lost power to the voltage-time backup protection through the substation delay trip, step-by-step closing for fault location, isolation and fast recovery of non-faulty sections. The entire process of fast recovery of the fault zone.
      Result  The test results show that the time of intelligent distributed completion protection is less than the maximum cut-off time ΔT1 (150 ms), and the over-current delay time fixed value ΔT2 in the voltage-time backup protection mode is between 200~300 ms.
      Conclusion  The method can guarantee the reliability of power supply for the rapid processing of faults, and can be promoted in the application of actual distribution network.

     

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