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Safety Analysis of Inner Capacitive Coupling Partial Discharge Sensor for 10kV Cable Joints under Lightning Impulse

机译:闪电下10kV电缆接头内部电容耦合局部放电传感器的安全性分析

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The inner capacitive coupling partial discharge sensor for cable joints is of high sensitivity and wide detecting bandwidth, but can be coupled to a dangerously high voltage under lightning impulse with lots of high frequency components. In this paper, an equivalent circuit model was built up to simulate the coupling potential of sensor under lightning impulse. Subsequently, an inner capacitive coupling sensor applied for partial discharge detection in 10kV cable joints was developed and installed; a lightning impulse was applied to the test cable. But the measured voltage was quite different from the simulated one in peak value and time to crest, so a correction for circuit simulation was made to give a result much more similar to the measured voltage. Finally, the effects of impulse front time and the resistivity of outer semicon layer on the coupling voltage were investigated, and this analysis indicates that the coupling voltage under lightning impulse can be dangerous when the resistivity of outer semicon is large enough. Hence, it is necessary to measure the resistivity of outer semicon or carry out lightning-impulse test to check out whether the capacitive sensor meets the security requirements before engineering application. The findings contribute to a better understanding of safety issue regarding the capacitive coupler and promoting its engineering application.
机译:用于电缆接头的内部电容耦合局部放电传感器具有高灵敏度和宽检测带宽,但可以耦合到具有大量高频分量的闪电脉冲下的危险高压。在本文中,建立了等效电路模型,以模拟传感器在闪电冲动下的耦合电位。随后,开发并安装了在10kV电缆接头中施加用于局部放电检测的内部电容耦合传感器;将闪电脉冲应用于测试电缆。但是测量的电压与峰值值和时间的模拟一个电压非常不同,因此使对电路模拟进行校正,以使结果与测量的电压相似。最后,研究了脉冲前续时间的影响和外半半层对耦合电压的电阻率,并且该分析表明,当外半定的电阻率足够大时,闪电脉冲下的耦合电压可能是危险的。因此,有必要测量外半半的电阻率或进行闪电冲动测试,以检查电容传感器是否满足工程应用前的安全要求。该调查结果有助于更好地了解有关电容耦合器的安全问题,并促进其工程应用。

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