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Study of the electric arc in DC contactors: Modeling, simulation and experimental validation

机译:直流接触器中电弧的研究:建模,仿真和实验验证

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This paper presents a method to simulate the current and voltage of an electric arc initiated at the contact's opening in a contactor. Based on a simplified model of the electric arc and also on the dynamics of the contacts during the opening, this method allows to simulate the arc ignition as well as the arc extinction. This study is based on the hypothesis that the arc dynamic is much faster than the opening speed. This hypothesis allows us to use a static arc equation. The arc is described as a nonlinear resistance, which is dependant of the gap between the contacts. The parameters of the gap's equation are approximated by an analysis of the video obtained with a high speed camera during the opening of the contactor. The parameters of this arc's model are approximated by experimental tests on a DC contactor with AgSnO2 contacts. A fitting method is developed to minimize the error introduced due to the non-linearity when the static arc parameters are fitted to the static arc equation. Simulation results are compared with experimental data to demonstrate the validity of the suggested method.
机译:本文提出了一种模拟在接触器中触点开口处产生的电弧电流和电压的方法。基于电弧的简化模型以及断开过程中触点的动态,该方法可以模拟电弧点火和灭弧。这项研究基于以下假设:电弧动力学比打开速度快得多。这个假设使我们可以使用静态弧方程。电弧被描述为非线性电阻,它取决于触点之间的间隙。间隙方程的参数可以通过分析接触器打开期间用高速摄像机获得的视频来近似得出。该电弧模型的参数通过在带有AgSnO 2 触点的直流接触器上的实验测试来近似。开发了一种拟合方法,以最大程度地减少将静态电弧参数拟合到静态电弧方程时由于非线性引起的误差。仿真结果与实验数据进行了比较,证明了该方法的有效性。

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