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Arc effect on single-phase reclosing time of a UHV power transmission line

机译:电弧对特高压输电线路单相重合闸时间的影响

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One of the important operational conditions of a single-circuit ultra-high-voltage transmission line is the power transmission by two phases during the clearance of a temporary single-phase short circuit. Such a condition may be sustained for an interval of 1 s without losing the dynamic stability of the system. The influence of the arc on the single-phase reclosing time of an ultra-high-voltage power transmission line is investigated on the basis of the primary and the secondary arc models incorporated into the transient program EMTP. The validity of the models used is proven by comparison with field test results on an actual 1150-kV power transmission line from Ekibastuz to Kokchetav in Northern Kazakhstan. The processes of this power transmission in the "dead time" of the single-phase reclosing cycle are simulated. It is shown in the paper that simplified short-circuit simulation without the incorporation of the dynamic arc model leads to erroneous results. Mathematical analysis and field experiments show that natural secondary arc extinguishing in a highly compensated 1150-kV power transmission line cannot be reached in a reasonable time (e.g., less than 1 s). It is shown in the paper that this problem can be solved by automatic phase shunting (APS) of the faulted phase.
机译:单电路超高压传输线的重要操作条件之一是在清除临时单相短路期间通过两相进行功率传输。这样的条件可以维持1 s的间隔,而不会丢失系统的动态稳定性。根据过渡程序EMTP中包含的一次和二次电弧模型,研究了电弧对超高压输电线路单相重合闸时间的影响。通过与从哈萨克斯坦北部Ekibastuz到Kokchetav的实际1150 kV输电线路的现场测试结果进行比较,证明了所使用模型的有效性。模拟了单相重合闸周期“停滞时间”中的这种动力传输过程。本文表明,如果不采用动态电弧模型,则简化的短路仿真会导致错误的结果。数学分析和现场实验表明,在合理的时间内(例如,小于1 s),无法在高度补偿的1150 kV输电线路中实现自然的二次灭弧。本文表明,可以通过故障相的自动分流(APS)解决此问题。

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