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A Mathematical Approach to Evaluate Arc Immobility Time in Low Voltage Circuit Breakers

机译:评估低压断路器中电弧不动时间的数学方法

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摘要

Immobility time of arc plays a major role in low voltage circuit breaking techniques. The mechanism of arc root movement is very complex, as it involves various electron - ion emission process and arc electrical conductivity. Efficient contact system design will have very low immobility time. This paper investigates a new mathematical approach in evaluating arc immobility period. This approach is based on the evaluation of characteristic contact gap for which arc remains immobile, for both normal and high current. The evaluation technique makes use of Newton's iterative method and is governed by the balance of electromagnetic and gas dynamic forces acting on the arc column. The simulation of interruption process has been realized using MATLAB. A set of equations that describe the contact movement, circuit parameter, magnetic and temperature field are used in the model. Various time dependent parameters like arc current, arc voltage, electric field, arc temperature etc., for fault currents greater than 1.5kA, can be obtained using this method. Direct as well as indirect parameters that are more sensitive towards arc immobility have been identified and evaluated. Experimental validation has shown that this model can predict the immobility time within a range of +- 10% accuracy.
机译:电弧的静止时间在低压断路器技术中起着重要作用。电弧根运动的机理非常复杂,因为它涉及各种电子-离子发射过程和电弧电导率。高效的接触系统设计将具有非常短的固定时间。本文研究了一种新的数学方法来评估电弧静止时间。这种方法基于对正常和高电流下电弧保持不变的特征接触间隙的评估。评估技术利用牛顿迭代法,并受作用在电弧塔上的电磁力和气体动力的平衡控制。中断过程的仿真已使用MATLAB实现。模型中使用了一组描述接触运动,电路参数,磁场和温度场的方程式。使用此方法可以获得故障电流大于1.5kA的各种随时间变化的参数,例如电弧电流,电弧电压,电场,电弧温度等。对电弧固定性更敏感的直接和间接参数已被识别和评估。实验验证表明,该模型可以预测固定时间在+/- 10%的精度范围内。

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