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Development of modern phase earthing system for improving quality of supply in MV network

机译:开发现代相接地系统以提高MV网络的供电质量

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This paper introduces the methods development of the modern phase earthing system. The target is to reduce the harmful short interruptions experienced by the customers and electricity producers with temporary phase-to-earth faults of a medium-voltage (MV) system. Especially in neutral isolated MV networks, the earth fault arc does not usually become extinct without an automatic reclosing function. It can be extinguished using a shunt circuit breaker (SCB) to earth the faulty phase temporarily at the feeding primary substation. The functioning of the SCB does not cause any voltage break to customers or distributed-generation units connected to the MV or low-voltage system. An essential requirement enabling the application of the phase earthing is that the residual current at the fault location must be determined reliably in order to evaluate fulfilling the touch voltage regulations. The inexact information on the magnitude of the residual current has restricted the utilization of phase earthing. Main attention was paid to the modeling of the phase earthing system for developing the method for determining the residual phase-to-earth current. The developed novel algorithm was tested by applying the PSCAD simulation environment. The results show that the residual fault current can be calculated with the actual fault case (e.g., IED or centralized protection system). The prototype of the SCB has also been installed and tested with artificial earth faults.
机译:本文介绍了现代相接地系统的方法发展。目标是减少客户和电力生产商因中压(MV)系统出现暂时的对地故障而遭受的有害短时中断。特别是在中性隔离中压电网中,没有自动重合闸功能,接地故障电弧通常不会消失。可以使用并联断路器(SCB)将其熄灭,以将故障相在馈电主变电站中暂时接地。 SCB的功能不会对连接到MV或低压系统的客户或分布式发电装置造成任何电压中断。能够进行相接地的基本要求是,必须可靠地确定故障位置的剩余电流,以便评估是否满足接触电压法规。有关剩余电流大小的不精确信息限制了相接地的利用。主要关注相接地系统的建模,以开发确定剩余相地电流的方法。通过应用PSCAD仿真环境测试了开发的新颖算法。结果表明,可以根据实际故障情况(例如IED或集中保护系统)来计算剩余故障电流。 SCB的原型也已安装并经过人工接地故障测试。

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  • 来源
    《IEEE Manchester PowerTech》|2017年|1-1|共1页
  • 会议地点 Manchester(GB)
  • 作者

    Ari Nikander;

  • 作者单位

    Tampere University of Technology;

  • 会议组织
  • 原文格式 PDF
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