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Research on Short-Circuit Discharge Behavior of Capacitive Circuits Based on Safety Spark Test Apparatus

机译:基于安全火花试验装置的电容电路短路放电行为研究

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Based on the safety spark test apparatus, the Short-Circuit Spark Discharge (SCSD) behavior of the simple capacitive circuit and switching converter are studied. It is pointed out that their SCSD process can be divided into four stages, i.e., dielectric-breakdown stage, spark-generated stage, spark-maintenance stage and spark-extinguish stage. For the simple capacitive circuit, its spark resistance is larger and maintaining voltage is almost unchanged in the spark-maintenance stage. As for the switching converter, its output short-circuit characteristics depend strongly on the load resistance and its maintaining voltage decline rapidly with the decrease of the load resistance. The experimental results also show that the discharge duration is approximately linear relationship with the capacitance and unrelated to the initial voltage. The circuit model is proposed, which can simulate the output SCSD process of the switching converter. By using the least-squares method, the relationship expressions between the discharging duration and capacitance in each time-stage are derived and the corresponding equivalent-resistance is obtained. The mathematical models of simulating the SCSD process of the switching converter are proposed, and the expressions of the current and voltage are derived. Experiment and simulation results are in positive to the analysis showing the feasibility of the proposed models.
机译:基于安全火花试验装置,研究了简单电容电路和开关转换器的短路火花放电(SCSD)行为。结果指出,它们的SCSD过程可以分为四个阶段,即介电击穿阶段,火花产生的阶段,火花维护阶段和火花灭火阶段。对于简单的电容电路,其火花电阻较大并且在火花维护阶段中的电压几乎不变。至于开关转换器,其输出短路特性强烈取决于负载电阻,并且随着负载电阻的降低,其保持电压迅速下降。实验结果还表明,放电持续时间与电容大致线性关系,与初始电压无关。提出了电路模型,可以模拟开关转换器的输出SCSD过程。通过使用最小二乘法,获得每个时间阶段的放电持续时间和电容之间的关系表达,并且获得了相应的等效电阻。提出了模拟切换转换器的SCSD处理的数学模型,并且导出了电流和电压的表达式。实验和仿真结果对于分析呈正面,显示了所提出的模型的可行性。

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