首页> 外文会议>2012 IEEE 10th International Conference on the Properties and applications of Dielectric Materials. >Differential time-domain spectroscopy technique based on polarization and depolarization current and their applications in oil-paper insulation estimation
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Differential time-domain spectroscopy technique based on polarization and depolarization current and their applications in oil-paper insulation estimation

机译:基于极化和去极化电流的差分时域光谱技术及其在油纸绝缘估计中的应用

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摘要

To quantificationally apply the results of polarization and depolarization currents (PDC) measurement for condition evaluation of oil-paper insulation in power transformer, the differential time-domain spectroscopy (DTDS) theory and the extraction technique of sensitive characteristic parameters are introduced. A set of oil-immersed paper samples are thermally acceleratedly aged at high temperature (∼150 °C) in laboratory based on the developed platform for oil-paper insulation thermal aging and dielectric response test. Under different temperatures (30, 40, 50, 60, 70 °C) and different aging degrees, PDC tests are performed on one of the samples by real-time tracking during the whole aging period. And at each aging stage, the aided tests, such as moisture content dissolved in oil and degree of polymerization (DP) of cellulose paper are measured. The test and analysis results show that aging condition has evident effect on DTDS curves. With sample aging, the DTDS curve shifts upwards. The extracted characteristic parameter, polarization response time t1 of the interfacial polarization between oil and pressboard, is regular and sensitive to aging condition changing. The influence mechanisms of aging on the time domain dielectric properties are analyzed. The empirical formula representing the relation among temperature, aging condition, and dielectric response in time domain is developed by means of 3-D surface fitting technique, to preliminarily investigate the application method of time-domain dielectric test.
机译:为了将极化电流和去极化电流(PDC)的测量结果定量地应用于电力变压器油纸绝缘的状态评估中,引入了差分时域光谱(DTDS)理论和敏感特征参数的提取技术。根据已开发的油纸绝缘热老化和介电响应测试平台,将一组油浸纸样品在高温(约150°C)下在实验室中进行热加速老化。在不同的温度(30、40、50、60、70°C)和不同的老化程度下,通过在整个老化期间进行实时跟踪,对其中一个样品进行PDC测试。并且在每个老化阶段,都要测量辅助测试,例如溶解在油中的水分含量和纤维素纸的聚合度(DP)。测试和分析结果表明,老化条件对DTDS曲线有明显影响。随着样品的老化,DTDS曲线向上移动。所提取的特征参数,即油压板界面极化的极化响应时间t1是规则的,并且对老化条件的变化敏感。分析了时效对时域介电性能的影响机理。通过3-D表面拟合技术建立了表示温度,时效条件和时域介电响应之间关系的经验公式,初步研究了时域介电测试的应用方法。

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