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New method for in live-line detection of small defects in composite insulator based on electro-optic E-field sensor

机译:基于电光电场传感器的复合绝缘子小缺陷在线检测的新方法

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摘要

Preliminary results based on experimental tests in laboratory and numerical investigation concerning the live-line detection of a conductive defect in HV composite insulator are depicted. The proposed method is based on E-field sensing using a non-invasive and compact pigtailed electro-optic (EO) single-ended probe. Measurements and numerical FEM modeling were done on a clean dead-end 28 kV composite insulator on which conductive defects of different size and position were simulated. Based on these simulations, the optimal location and orientation of the EO probe were determined regarding the conductive defect length and position. Laboratory tests were performed to validate these results and demonstrate the efficiency of the new detection method. The experimental results have demonstrated that using the optimal EO probe orientation, the E-field sensor was able to detect and locate conductive defect as short as 15 mm × 1 mm in contact with the HV electrode and of 26 mm × 2 mm between sheds. Moreover, the experimental tests have demonstrated the ability of the EO sensor to detect the presence of corona discharges induced by the conductive defects.
机译:给出了基于实验室实验测试的初步结果以及有关带电检测高压复合绝缘子导电缺陷的数值研究的初步结果。所提出的方法基于使用无创且紧凑的尾纤电光(EO)单端探头的电场感测。在干净的无端28 kV复合绝缘子上进行了测量和数值有限元建模,在其上模拟了不同尺寸和位置的导电缺陷。基于这些模拟,就导电缺陷的长度和位置确定了EO探针的最佳位置和方向。进行了实验室测试以验证这些结果并证明新检测方法的效率。实验结果表明,使用最佳的EO探头方向,电场传感器能够检测和定位与HV电极接触的短至15 mm×1 mm的导电缺陷,而棚间间距为26 mm×2 mm。此外,实验测试证明了EO传感器具有检测由导电缺陷引起的电晕放电的能力。

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