Hydrophobicity evaluation of polymer insulator based on surface discharge characteristics

B. Du, X. X. Cheng, Z. L. Ma, K. Wu
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Abstract

The hydrophobicity evaluation for polymer insulators continues to be a prominent characteristic. For the purpose of evaluating the hydrophobicity of polymer insulator, a VHF antenna was utilized to receive high frequency electromagnetic signals, which were induced during the surface discharge on the sample surface. The wavelet theory was applied to analyze the electromagnetic signals that were processed by signal-processing system. The obtained 3-D images of surface discharge, which contains the frequency, the time and the amplitude, can figure out the hydrophobicity of polymer insulator with different ageing time efficiently. Based on 3-D images, 2-D contour line spectra were set up for investigating the complexity of discharge. The fractal dimensions of 2-D spectra and lacunarity were computed to assess the severity of surface discharge quantificationally. It is found that the series of methods using PD-induced electromagnetic wave can efficiently recognize the characteristics the discharge on the surface of insulators, which can be utilized to evaluate the hydrophobicity of polymer insulators.
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基于表面放电特性的聚合物绝缘子疏水性评价
聚合物绝缘体的疏水性评价仍然是一个突出的特点。为了评估聚合物绝缘体的疏水性,利用甚高频天线接收样品表面放电时产生的高频电磁信号。应用小波理论对信号处理系统处理后的电磁信号进行分析。得到的表面放电的三维图像包含放电频率、放电时间和放电幅度,可以有效地计算出不同老化时间下聚合物绝缘子的疏水性。在三维图像的基础上,建立了二维轮廓线光谱,用于研究放电的复杂性。计算了二维光谱分形维数和空隙度,定量评价了地表放电的严重程度。研究发现,利用pd感应电磁波的一系列方法能够有效地识别绝缘子表面的放电特性,可用于评价聚合物绝缘子的疏水性。
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