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Experimental study on the evolution of surface discharge for oil-paper insulation in transformers

机译:变压器油纸绝缘表面放电演变的实验研究

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Oil-paper is the main insulation of Oil-immersed power transformers. Reflecting the deterioration of insulation effectively, partial discharge (PD) has become one of the significant means to astimate the insulation condition of power transformers. Surface discharge is one of the most important type of PD. Studying the long-term process of this PD pattern, by the means of acquiring PD data and observing the length of discharge channel along the pressboard surface, this paper puts forward the descriptors and characteristics for each discharge stage, and lays the foundation for identifying the fault severity of surface discharge. In order to get reliable and objective PD data, we establish a temperature-controlled experimental platform, which can simulate the fault of surface discharge without corona under certain high voltage, and use ultra high frequency (UHF), ultra wide band (UWB), conversional Impulsive current(CIC) to study this PD evolution process. Voltage-elevating method is used to accelerate the discharge evolution, and the statistical characteristics of surface discharge process are extracted, which is from the initial discharge to the insulation breakdown. The observed data, e.g. the maximal amplitudes of PD (Urn), the number of PD (N) and the energy of PD (P), appear to have an increasing trend. The closer to breakdown, the better correspondence of the detected signals is.
机译:油纸是油浸式电力变压器的主要绝缘材料。有效地反映了绝缘的恶化,局部放电(PD)已成为改善电力变压器绝缘状况的重要手段之一。表面放电是PD的最重要类型之一。通过获取PD数据并观察沿压板表面的排放通道长度,研究了该PD模式的长期过程,提出了每个排放阶段的描述和特征,为识别排放水平奠定了基础。表面放电的故障严重程度。为了获得可靠,客观的局部放电数据,我们建立了一个温度控制的实验平台,该平台可以模拟在一定高压下无电晕的表面放电故障,并使用超高频(UHF),超宽带(UWB),转换脉冲电流(CIC)来研究此PD演化过程。采用电压升高法加速放电过程,提取从初始放电到绝缘击穿的表面放电过程的统计特征。观察到的数据,例如PD的最大振幅(Urn),PD的数目(N)和PD的能量(P)似乎具有增加的趋势。越接近故障,检测到的信号越好对应。

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