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Arc Modelling for Switching Performance Evaluation in Low-Voltage Switching Devices

机译:用于在低压开关装置中切换性能评估的电弧模拟

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Arc modelling is an efficient tool for predicting the switching performance of low-voltage switching devices (LVSDs) prior to testing real products. Moreover, it offers a valuable design aid in the improvement and optimization of LVSDs. This paper focuses on the investigation of evaluators that predict reignition phenomena and the numerical simulation of arc characteristics in LVSDs. It is found that the probability of reignition depends strongly on the ratio of the system voltage to the exit-voltage. The implemented 3-D arc model is based on conventional magnetohydrodynamics theory and takes into account the properties of air that vary with temperature and pressure, motion of the contact, arc root formation and plasma radiation. The simulated results are compared with experimental data to validate the proposed arc model and the voltage trends show agreement.
机译:电弧建模是一种有效的工具,用于在测试真实产品之前预测低压开关装置(LVSDS)的开关性能。此外,它提供了有价值的设计辅助,在LVSD的改进和优化方面。本文重点介绍了预测重新开始现象的评估员的调查以及LVSDS中电弧特性的数值模拟。发现重新原因的概率强烈地取决于系统电压与出射电压的比率。实施的3-D弧模型基于传统的磁力流体基础理论,并考虑了随温度和压力,接触,电弧根部形成和等离子体辐射的运动而变化的空气的性质。将模拟结果与实验数据进行比较,以验证所提出的电弧模型和电压趋势。

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