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A field calibration method based on forward transport coefficient for UHF partial discharge detection sensors in GIS

机译:基于正向输运系数的UHF局部放电检测传感器在GIS中的现场标定方法

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To ensure the effectiveness of ultra-high-frequency (UHF) method on the on-line monitoring and live detecting of partial discharge (PD) for the gas-insulated metal-enclosed switchgear (GIS), this paper proposes a field calibration method for the UHF PD detection sensors in GIS, which is based on the forward propagation coefficient in the microwave network theory. Firstly, on a full-scare test platform of a 252 kV GIS, the forward propagation coefficients between several pairs of UHF sensors were measured, which agreed well with the frequency spectrum characteristics calculated by the pulse injecting method indirectly and those of PD with different defect types. Then, the criterion corresponding to the detection sensitivity of 5 pC for the proposed method was studied, that is the mean value of forward propagation coefficient between 300MHz and 1.5GHz is not less than -75 dB. Finally, the proposed method including the criterion was applied to the field calibration for the sensitivity of the PD online monitoring UHF sensors in an 1100 kV GIS. Through the above research, differentiated arrangement of UHF sensors was suggested for the on-line monitoring and live detecting of PD in GIS.
机译:为确保超高频(UHF)方法在气体绝缘金属封闭开关设备(GIS)的局部放电(PD)在线监测和实时检测中的有效性,提出了一种现场校准方法GIS中的UHF PD检测传感器,它基于微波网络理论中的前向传播系数。首先,在252 kV GIS的全面测试平台上,测量了几对UHF传感器之间的前向传播系数,这与间接通过脉冲注入方法计算的频谱特性以及具有不同缺陷的PD的频谱特性非常吻合。类型。然后,研究了该方法与5 pC的检测灵敏度相对应的标准,即300MHz至1.5GHz之间的前向传播系数的平均值不小于-75 dB。最后,将所提出的包含该标准的方法应用于现场对1100 kV GIS中的PD在线监测UHF传感器的灵敏度进行校准。通过以上研究,提出了将UHF传感器的区别布置用于GIS中PD的在线监测和实时检测。

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