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Impact of surge arrester number and placement on reliability and lightning overvoltage level in high voltage substations

机译:避雷器数量和位置对高压变电站可靠性和雷电过电压水平的影响

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Surge arresters are the most critical equipment for protecting high voltage substations. They play an important role in substations for limiting switching and lightning surges and diverting these surges to ground. On the other hand, surge arrester number and placement for high voltage substations can be determined based on some evaluations in the designing process of substations. Surge arresters can be placed on the both ends of substations, transformers, circuit breakers, reactors, capacitors and also high long bus-bars and etc. Therefore, failure of arresters during overvoltage can put substations in risk condition. Moreover, surge arresters may be inclined to be short circuit during normal operation condition due to ageing process and/or improper quality. This paper attempts to assess reliability of three common substation configurations namely: (1) one breaker and a half; (2) double-bus double-breaker; and (3) ring bus-bar in different placement of surge arresters. At first, maximum voltages on equipment are calculated in different lightning stroke locations through simulation in EMTP-RV. Studies without surge arrester and the presence of surge arrester in different locations are analyzed and compared. Then surge arrester's placement impacts on the substations reliability indices are calculated in normal operating condition and overvoltage condition by minimal cut set method and simulation results. Analytical studies reveal that surge arrester can increase substations reliability. But for low annual number of lightning stroke, substation reliability may decrease. Also increasing surge arrester number more than substation need reduces reliability.
机译:避雷器是保护高压变电站的最关键设备。它们在变电站中起着重要的作用,用于限制开关和雷电浪涌并将这些浪涌转移到地面。另一方面,可以基于变电站设计过程中的一些评估来确定高压变电站的避雷器数量和位置。避雷器可以放置在变电站的两端,变压器,断路器,电抗器,电容器以及较长的母线等。因此,过电压期间避雷器的故障会使变电站处于危险状态。此外,由于老化过程和/或质量不当,电涌放电器在正常工作条件下可能会发生短路。本文试图评估三种常见变电站配置的可靠性,即:(1)一个断路器半; (2)双母线双断路器; (3)在避雷器的不同位置放置环形母线。首先,通过在EMTP-RV中进行仿真来计算设备在不同雷击位置的最大电压。分析并比较了没有电涌放电器以及在不同位置均存在电涌放电器的研究。然后,通过最小割集法和仿真结果,计算了避雷器的位置对变电站可靠性指标的影响。分析研究表明,避雷器可以提高变电站的可靠性。但是,由于每年的雷击次数较少,因此变电站的可靠性可能会降低。同样,增加电涌放电器的数量超过变电站的需求,也会降低可靠性。

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