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Effect of temperature on condition assessment of oil-paper insulation using polarization-depolarization current

机译:温度对使用极化-去极化电流的油纸绝缘状态评估的影响

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Polarization Depolarization Current method of dielectric testing is popularly used by the utilities for condition assessment of the insulation of power transformers. Test temperature is an important factor that affects the polarization depolarization current data measured. In this work the effect of test temperature in condition assessment of cellulosic part of oil-paper insulation using polarization depolarization current method has been investigated. Polarization and depolarization current of experimental samples, emulating oil-paper insulation of power transformers, at different test temperatures were measured. The cellulosic moisture content was estimated for the samples at different temperatures using the farthest zero of the transfer function of the Maxwell's model derived from the polarization depolarization current data. The error in the calculated paper moisture content is determined from comparison with the moisture content calculated from the minimum tan delta of the frequency domain spectroscopy data of the test samples maintained at different test temperature. Results obtained clearly show that the error in the moisture content calculated from the polarization depolarization current data increases with the increase in temperature.
机译:公用事业公司普遍使用极化消极电流方法进行电介质测试,以评估电力变压器的绝缘状况。测试温度是影响测量的极化去极化电流数据的重要因素。在这项工作中,研究了测试温度对使用极化去极化电流法评估油纸绝缘纤维部分状况的影响。测量了在不同测试温度下模拟电力变压器油纸绝缘的实验样品的极化和去极化电流。使用从极化去极化电流数据得出的麦克斯韦模型传递函数的最远零值,估算了不同温度下样品的纤维素水分含量。通过与由保持在不同测试温度下的测试样品的频域光谱数据的最小正切tanδ计算出的水分含量的比较来确定所计算出的纸张水分含量中的误差。获得的结果清楚地表明,根据极化去极化电流数据计算出的水分含量误差随着温度的升高而增加。

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