本质安全开关晶体管变换器输出短路电容放电的数值模拟

Dangshu Wang, Jiaan Yi, Z. Qiang, Yulong Guo, Jiatong Zhao, Yingying Shen, Siqin Liu
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引用次数: 0

摘要

当本安开关变换器采用IEC火花实验装置进行启闭爆炸试验评定时,输出电路可等效为电容电路。为了研究短路放电过程中的微观特性,根据电荷守恒定律,将电容电路等效为等量电荷,采用粒子法(PIC / MCC)建立了爆炸气隙中钨丝为阳极、镉盘为阴极的二维板对板静电模型。模拟了介质击穿、火花放电和火花维护的放电过程,验证了该方法的正确性和可行性。通过对带电粒子数量、粒子空间分布和电极间隙电场强度变化的分析,解释了电容器短路放电前三个阶段的放电过程。发现电容器电路放电过程中介质击穿只与极板电压在电极间隙形成的电场强度有关。当场增强系数为100,场强大于2x107 v/m时,电极之间存在场发射,电极间隙可以被击穿。电极极板的临界击穿间距为1.2um。在放电过程中,间隙中的电子数先快速增加,然后缓慢增加,达到峰值后缓慢下降。当外部电容大于lpF时,电子数增加1X10?每增加10pF。基于平面二维模型,分析了放电过程中电场的变化趋势,得出火花维护阶段电容器的电场强度是一个固定值,该值与电容值无关。当电场强度为9x106 v/m时,电压不会下降并维持在9V,电容器放电处于火花维护阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of output short-circuit capacitor discharge of intrinsically safe switching transistor converter
When the intrinsically safe switching converter adopts the IEC spark experimental device for opening and closing explosive test evaluation, the output circuit can be equivalent to a capacitor circuit. In order to study the micro characteristics in the process of short-circuit discharge, the capacitor circuit is equivalent to the same amount of charge according to the law of charge conservation, A two-dimensional plate-to-plate electrostatic model with tungsten wire as anode and cadmium disk as cathode in explosive gas gap is established by particle method (PIC / MCC). The discharge processes of dielectric breakdown, spark discharge and spark maintenance are simulated, and the correctness and feasibility are verified. By analyzing the number of charged particles, the spatial distribution of particles and the change of electric field intensity in the electrode gap, the discharge process of the first three stages of capacitor short-circuit discharge is explained. It is found that the dielectric breakdown in the discharge process of capacitor circuit is only related to the electric field intensity formed by the plate voltage in the electrode gap. When the field enhancement factor is 100 and the field strength is greater than 2x107 v/m, there is field emission between the electrodes, and the electrode gap can be broken down. The critical breakdown spacing of the electrode plate is 1.2um During the discharge process, the number of electrons in the gap first increases rapidly, then increases slowly, and then decreases slowly after reaching the peak. When the external capacitance is greater than lpF, the number of electrons increases by 1X10? for every 10pF increase. Based on the flat two-dimensional model, this paper analyzes the change trend of electric field in the discharge process, and obtains that the electric field intensity of capacitor in the spark maintenance stage is a fixed value, which is independent of the capacitance value. When the electric field intensity is 9x106 v/m, the voltage will not drop and maintain at 9V, and the capacitor discharge is in the spark maintenance stage.
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