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Incremento dei tempi di attesa alla richiusura degli interruttori MT per il miglioramento della continuità del servizio

机译:增加mV断路器重合闸的等待时间,以提高服务连续性

摘要

The large deployment of network automation with reclosing practices has been the usual solution adopted by distributors to achieve the goal of providing a distribution network with high performances in terms of number and duration of interruptions. In particular, the usual practice adopted by distributor when managing faults in distribution circuits consists in clearing the faults by the immediate tripping of one or more circuit breakers, and re-energize the lines after the automatic reclosing time. In distribution networks the reclosing time of a circuit breaker is typically 300 milliseconds, that is the shortest permissible time in which the circuit breaker need to reclose. Various studies have shown that up to as 90% of faults on most distribution overhead lines are transient (e.g. insulator flashover, contact with foreign objects like animals and trees, etc.) and transient faults can be cleared by momentarily de-energizing the line, in order to allow the fault to extinguish, autoreclosing can then restore service to the line. Autoreclosing success rates vary depending on several technical and environmental (temperature, pressure, humidity, etc.) parameters, but the majority of faults can be successfully cleared by the proper use of tripping and autoreclosing. In the paper the authors evaluate the possible benefits of adding an external time delay to circuit breaker reclosing procedure. The goal of this additional delay is to be reasonably sure that the arc at the fault location will not reignite at the reclosing instant creating a second fault, and, then, obtain significant benefits on continuity of service.udIn order to deeply investigate the problem, an arc model is first developed by using the Electromagnetic Transient Program EMTP-RV, and, then, the fault model is incorporated at different locations of a 20kV Medium Voltage (MV) network with real size characteristics. Faults in insulated and resonant grounding networks of different characteristics (OHL lines and cables) are investigated.udThe findings of the study are that an increased reclosing time may have a significant effect in increasing the number of self-extinguish faults, especially in transient double-phase faults in metal enclosed electrical installations. The strategy of extending the switching reclosing time may permit reducing the number of transient faults that reignite after reclosing, permitting to significantly reduce the outage time due to faults and providing a higher level of service continuity to customers.
机译:带有重合闸实践的网络自动化的大规模部署已成为分销商采用的通常解决方案,以实现为配电网络提供高性能的中断次数和持续时间的目标。具体地说,配电器在管理配电电路中的故障时所采用的通常做法是通过立即跳闸一个或多个断路器来清除故障,并在自动重合闸时间后重新给线路通电。在配电网络中,断路器的重合闸时间通常为300毫秒,这是断路器需要重新合闸的最短允许时间。各种研究表明,大多数配电架空线路中多达90%的故障是瞬态的(例如绝缘子闪络,与动物和树木等异物的接触等),并且可以通过暂时断电来清除瞬态故障,为了排除故障,自动重合闸可以恢复线路的服务。自动重合闸的成功率取决于几个技术和环境参数(温度,压力,湿度等),但是通过正确使用跳闸和自动重合闸,可以成功清除大多数故障。在本文中,作者评估了在断路器重合闸过程中增加外部时延可能带来的好处。此额外延迟的目的是合理地确保故障位置的电弧不会在重合闸瞬间重新点燃,从而产生第二个故障,然后在服务的连续性上获得重大利益。 ud为了深入研究问题首先,使用电磁暂态程序EMTP-RV开发电弧模型,然后将故障模型合并到具有实际尺寸特征的20kV中压(MV)网络的不同位置。研究了发现:重合闸时间的增加可能对增加自熄故障的数量有重大影响,特别是在瞬变双重故障中。金属封闭式电气装置中的三相故障。延长开关重合闸时间的策略可以减少重合闸后重新发生的瞬态故障的数量,从而可以大大减少由于故障引起的停电时间,并为客户提供更高水平的服务连续性。

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  • 作者

    Tedde Sergio;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
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  • 入库时间 2022-08-20 21:02:02

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