首页> 外文会议>2010 International Conference on High Voltage Engineering and Application >Fault nature identification for single-phase adaptive reclosure on double circuit EHV transmission lines with shunt reactors
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Fault nature identification for single-phase adaptive reclosure on double circuit EHV transmission lines with shunt reactors

机译:带有并联电抗器的双回路超高压输电线路的单相自适应重合闸故障性质识别

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The double circuit EHV transmission lines have been widely used because of its many advantages. But when faults occur, the style of fault and the operation condition are more complicated than that on the single circuit transmission line. The faults occurred on the transmission lines is mainly transient fault. The auto-reclosure is normally applied after the fault line tripped to improve the power supplies reliability and the power system safety. But if the fault is permanent and the auto-reclosure reclosed accordingly, the power system and its apparatus will suffer short circuit current again, resulting further damage of the equipment and making power system instability. Thus, it is very important to distinguish the transient and permanent fault before the tripped fault line auto-reclose. If the EHV line has shunt reactor, identification of fault nature becomes even more difficult. There are several methods proposed for distinguishing the transient and permanent fault but mainly for single circuit transmission line. In this paper, a novel method is proposed for the EHV double circuit transmission lines with shunt reactor. After tripped, the phase voltage across shunt reactor was calculated using our established transient fault line model regardless of the fault is transient or permanent. The difference between the calculated voltage and the measured voltage of the fault phase across shunt reactor was employed to identify transient or permanent fault. The amplitude ratio, i.e. the difference of the voltage between calculated and measured to the voltage across neutral reactor was used to judge fault nature. If the amplitude ratio is greater less than 1, the fault is regarded as transient. If it is more than 1, it is regarded as permanent. This result can be further verified by EMTP simulation.
机译:双回路超高压输电线路由于其许多优点而被广泛使用。但是,当发生故障时,故障的类型和操作条件比单回路传输线上的要复杂得多。传输线上发生的故障主要是暂态故障。自动重合闸通常在故障线路跳闸后使用,以提高电源的可靠性和电源系统的安全性。但是,如果故障是永久性的,并且自动重合闸相应地重新闭合,则电力系统及其设备将再次遭受短路电流的影响,从而进一步损坏设备并导致电力系统不稳定。因此,在跳闸的故障线自动重合闸之前,区分瞬态故障和永久性故障非常重要。如果超高压线路具有并联电抗器,则故障性质的识别将变得更加困难。提出了几种区分暂态和永久故障的方法,但主要用于单回路传输线。本文提出了一种用于带并联电抗器的超高压双回输电线路的新方法。跳闸后,无论故障是瞬态还是永久性故障,均使用我们建立的瞬态故障线模型计算并联电抗器的相电压。跨并联电抗器的故障相的计算出的电压与测量出的电压之间的差用于识别瞬态或永久性故障。振幅比,即计算和测量之间的电压与中性电抗器两端的电压之差被用来判断故障性质。如果振幅比小于1,则将故障视为瞬态。如果大于1,则视为永久。 EMTP仿真可以进一步验证该结果。

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