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Implementation of leader development models in ATP-EMTP Using a type-94 circuit component

机译:使用94型电路组件在ATP-EMTP中实现领导者开发模型

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Evaluation of the dielectric strength of transmission line insulation subjected to fast-front overvoltages is of major importance for the insulation coordination of overhead lines and the connected substations. Among models proposed in literature for the prediction of the dielectric behavior of air gaps and insulators, leader development models have a greater physical significance. In this study several leader development models are implemented in a new model in ATP-EMTP using MODELS simulation language. The new model is solved simultaneously with the rest of simulated system interacting with it as a circuit element; this is accomplished by using the model with a type-94 circuit component. The developed model is verified against literature data referring to breakdown of long air gaps. Shielding failure and backflashover simulations are conducted for a 150 kV and a 400 kV overhead transmission line to demonstrate the effects of modeling of the predischarge current flowing during leader propagation phase on the estimated critical currents.
机译:评估快速前端过电压下传输线绝缘的介电强度对于架空线和所连接的变电站的绝缘协调至关重要。在文献中提出的用于预测气隙和绝缘子介电性能的模型中,引线开发模型具有更大的物理意义。在这项研究中,使用MODELS仿真语言在ATP-EMTP的新模型中实现了几种领导者开发模型。同时解决了新模型,并将仿真系统的其余部分作为电路元素与之交互。这可以通过使用带有94型电路组件的模型来完成。所开发的模型已针对长期空气间隙破裂的文献数据进行了验证。针对150 kV和400 kV架空输电线路进行了屏蔽故障和反闪仿真,以证明建模在引线传播阶段期间流动的预放电电流对估计的临界电流的影响。

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