Temperature dependent relaxation studies on oil-filled transformer

Hongyan Cao, S. Birlasekaran
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引用次数: 11

Abstract

Relaxation studies in oil-filled power transformers are very important to evaluate the ageing characteristics of the oil-paper insulation. The polarization processes at the interfaces can be understood by making measurements at different operating temperatures. A laboratory study is carried out using both frequency and time domain techniques. In the frequency domain technique, a dielectrometer is used and the linear response characteristics with energizing voltage magnitude up to 200 V peak are studied. In the time domain method, the recovery voltage method (RVM) up to 300 V DC is used to study the linearity in response. The obtained response is fitted to an extended Debye model and the interrelation of the model with each measuring technique is established. Then, the temperature dependence of these parameters is studied by keeping the oil-paper insulated transformer in a humidity/temperature controller for 10 hours at a certain setting. The ambient temperature is changed from 20/spl deg/C to 50/spl deg/C. The responses at high temperatures differ from the measurement at room temperature. The conductance property of the transformer insulation between two windings changes significantly. Three types of analysis are done to correlate the measurements. The first analysis is to fit the frequency and time domain responses to the extended Debye model. The determined parameters are compared to evaluate the validity. of model. In the second method of analysis with RVM, RV spectra are evaluated in term of peak magnitude variation and time shift of peak occurrence with temperature. In the third method of analysis with low frequency response, it is found that the variation of admittance and loss angle has a unique bandwidth variation with temperature. It is found that the relaxation processes of oil and oil-paper are distinctive and their dependence on temperature is different.
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充油变压器的温度依赖性松弛研究
充油电力变压器的弛豫研究对评价油纸绝缘的老化特性具有重要意义。通过在不同的工作温度下进行测量,可以了解界面处的极化过程。使用频域和时域技术进行了实验室研究。在频域技术中,采用介电计,研究了激励电压峰值高达200v时的线性响应特性。在时域方法中,采用高达300v DC的恢复电压法(RVM)来研究响应的线性度。将得到的响应拟合到扩展的Debye模型中,并建立了该模型与各种测量技术之间的相互关系。然后,通过将油纸绝缘变压器在温湿度控制器中保持一定设置10小时,研究了这些参数对温度的依赖关系。环境温度由20/spl℃变为50/spl℃。高温下的响应与室温下的测量结果不同。变压器两绕组间绝缘的电导特性发生显著变化。进行了三种类型的分析来关联测量结果。首先对扩展的德拜模型进行频域和时域响应拟合。对确定的参数进行了比较,以评价其有效性。的模型。在第二种RVM分析方法中,根据峰值大小变化和峰值出现随温度的时移来评估RV光谱。在低频响应的第三种分析方法中,发现导纳和损耗角随温度的变化具有独特的带宽变化。研究发现,油和油纸的弛豫过程各有特点,对温度的依赖性也不同。
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