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Transients Caused by Sequential Circuit Breaker Tripping Issued by Busbar Protection

机译:母线保护引起的顺序断路器跳闸引起的瞬态

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A study of transients in a high voltage substation 400/110 kV is presented in the paper. An analysis was carried out after a fault on the 110 kV busbar, which caused severe damage in the substation. Investigation was focused on a time frame of several sequential circuit breaker trippings. A first step of the study was collection of data from the primary and secondary system in the substation and the control centre. After numerous analyses of data an attempt was made to construct a precision model, which could be used in the computation. Appropriate models were developed for circuit breakers, voltage (potential) and current metering transformers, power transformers, surge arresters, overhead lines and an equivalent grid. The components of the power system can be modelled for the very particular purpose, which means that a different frequency model should be used and each element in this analysis has a specific frequency response. An attempt was made at very detailed modelling of a power transformer, air blast and SF_6 circuit breakers. Computed results of fault currents were compared with measurements captured by the disturbance recorders in the field, mainly in differential numerical relays. Different switching schemes and different tripping sequences of several 110 kV circuit breakers were analysed with a constructed model in the millisecond range. Models of circuit breaker with different types of media, air blast and SF_6 gas were used in the cases investigated. Modelling of the circuit breakers' electrical arc was an important item in all cases in order to take into account the interaction between electrical arc and circuit current during the process of current interruption. The Schwarz/Avdonin equation is applied to model the dynamic behaviour of an electric arc. The fault studied was accompanied by a large short circuit current. For this particular case two types of circuit breaker, air blast and SF_6 were modelled. An important conclusion from those analyses was that sequential tripping of several circuit breakers does not cause superposition of overvoltages, because interruption the current happens when it is passing through the zero. Even the record from the substation and the disturbances recorder proves that each particular circuit breaker was successfully opened. On that basis, focus was put only on the final opening of the breaker and its arc extinction. The conclusion can be drawn that such a substation fault should have no influence on excessive overvoltages that can threaten the insulation of components in the substation.
机译:本文提出了对400/110 kV高压变电站中的瞬态进行的研究。 110 kV母线发生故障后进行了分析,该故障导致变电站受到严重损坏。调查的重点是几个连续断路器跳闸的时间范围。研究的第一步是从变电站和控制中心的一次和二次系统中收集数据。在对数据进行大量分析之后,试图构建一个可以在计算中使用的精度模型。为断路器,电压(电势)和电流计量变压器,电力变压器,避雷器,架空线和等效电网开发了合适​​的模型。可以针对非常特定的目的对电源系统的组件进行建模,这意味着应该使用不同的频率模型,并且此分析中的每个元素都具有特定的频率响应。尝试对电源变压器,鼓风和SF_6断路器进行非常详细的建模。将故障电流的计算结果与现场故障记录仪捕获的测量值进行了比较,主要是在差分数字继电器中。利用毫秒范围内的构建模型,分析了几个110 kV断路器的不同开关方案和不同跳闸顺序。在所研究的案例中,使用了具有不同介质,鼓风和SF_6气体的断路器模型。在所有情况下,断路器电弧的建模都是一项重要的工作,以考虑到电流中断过程中电弧与电路电流之间的相互作用。 Schwarz / Avdonin方程用于模拟电弧的动态行为。研究的故障伴随着大的短路电流。对于这种特殊情况,对两种类型的断路器(鼓风和SF_6)进行了建模。这些分析得出的重要结论是,几个断路器的顺序跳闸不会引起过电压的叠加,因为当电流流过零时会中断电流。甚至来自变电站和故障记录器的记录也证明每个特定的断路器均已成功断开。在此基础上,重点仅放在断路器的最终打开及其灭弧上。可以得出这样的结论:这样的变电站故障不应对可能威胁变电站中组件绝缘的过电压产生影响。

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