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Evaluation of overshoot rate of lightning impulse withstand voltage test waveform based on new base curve fitting methods - study on overshoot waveform in an actual test circuit

机译:基于新的基本曲线拟合方法评估雷电冲击耐压测试波形的过冲率-实际测试电路中的过冲波形研究

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In a lightning impulse withstand voltage test for large-sized electric power equipment, voltage waveforms sometimes contain overshoot due to the capacitance of the test equipment and the residual inductance of the test circuit including the power source. The authors have been studying fitting methods for extracting a reasonable base curve from this overshoot waveform. In the previous study, each of the fitting methods was applied to the overshoot waveform simulated using a mathematical equation to evaluate the respective merits and demerits. As the test waveform, the present paper used the overshoot waveform actually generated using a large-scale test circuit. This actual waveform was determined as one over which an oscillation waveform of several hundred kHz, which was actually at issue, was superimposed. The correct base curve of the actual waveform was derived through detailed analysis of the equivalent circuit of the test circuit and the overshoot rate was calculated based on this correct value. This correct overshoot rate was compared with that calculated using each of the fitting methods to evaluate which was an optimum fitting method. Consequently, it was found that an overshoot rate close to the correct value could be derived using the new base curve extraction method for the actual waveform. Meanwhile, it should be noted that the kfactor filtering scheme was implemented after the application of various fitting methods, and then the shape parameters of the test voltage waveforms, such as the crest value, wavefront duration, and wavetail duration, were almost identical, which confirmed that fitting methods had only a minor influence on the test voltage waveform.
机译:在大型电力设备的雷电冲击耐压测试中,由于测试设备的电容和包括电源在内的测试电路的残留电感,电压波形有时会包含过冲。作者一直在研究从过冲波形中提取合理基曲线的拟合方法。在以前的研究中,将每种拟合方法应用于使用数学方程式模拟的过冲波形,以评估各自的优缺点。作为测试波形,本文使用了使用大型测试电路实际产生的过冲波形。将该实际波形确定为叠加有实际问题的几百kHz振荡波形的波形。通过对测试电路的等效电路进行详细分析,得出实际波形的正确基准曲线,并根据该正确值计算出过冲率。将正确的过冲率与使用每种拟合方法计算出的正确过冲率进行比较,以评估哪种是最佳拟合方法。因此,发现对于实际波形,可以使用新的基本曲线提取方法得出接近正确值的过冲率。同时,应注意的是,kfactor滤波方案是在应用各种拟合方法之后实施的,因此测试电压波形的形状参数(例如波峰值,波前持续时间和波尾持续时间)几乎相同,因此证实了拟合方法对测试电压波形的影响很小。

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