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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Determination of optimized slope of triangular excitation for condition assessment of oil-paper insulation by frequency domain spectroscopy
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Determination of optimized slope of triangular excitation for condition assessment of oil-paper insulation by frequency domain spectroscopy

机译:频域光谱法确定油纸绝缘状态评估三角激励的最佳斜率

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摘要

This paper presents a novel technique to determine the optimized slope of triangular excitation in frequency domain spectroscopy that can provide better information about condition of oil-paper insulation. In conventional frequency domain spectroscopy, estimation of frictional losses due to the interactions of oscillating dipoles helps in investigating insulation condition. But, different types of dipoles in insulation cannot have similar dielectric relaxation times. Therefore, excitation having multiple frequencies is necessary for the dipoles to undergo more synchronized oscillations. This synchronized oscillation of dipoles reduces the inter-dipolar interactions and provides better information regarding insulation condition. Hence, in this work, triangular excitation is used for frequency domain spectroscopy since its harmonic contents can be varied by changing the slope. The slope of the triangular excitation is optimized to obtain more accurate information about the insulation condition. The optimized triangular excitation for insulation is determined using the proposed equivalent circuit model. To experimentally determine the effectiveness of the model, three test samples having preset moisture content in paper have been prepared in the laboratory. The optimized triangular excitations are then applied to the test samples to estimate their insulation condition. Experimental results show that the use of optimized triangular excitation provides information regarding the condition of oil-paper insulation with greater accuracy. In order to investigate the applicability of the proposed equivalent circuit model, the experiment has also been performed on real-life transformers.
机译:本文提出了一种确定频域光谱中三角激发的最佳斜率的新技术,该技术可以提供有关油纸绝缘状况的更好信息。在常规的频域光谱学中,由于振荡偶极子的相互作用而引起的摩擦损失的估计有助于调查绝缘状况。但是,绝缘中不同类型的偶极子不能具有相似的介电弛豫时间。因此,具有多个频率的激励对于偶极子经历更多的同步振荡是必要的。偶极子的这种同步振荡减少了偶极间的相互作用,并提供了有关绝缘条件的更好信息。因此,在这项工作中,三角激发用于频域光谱分析,因为它的谐波含量可以通过改变斜率来改变。优化了三角形激励的斜率以获得关于绝缘条件的更准确的信息。使用建议的等效电路模型确定绝缘的最佳三角激励。为了通过实验确定模型的有效性,在实验室中准备了三个具有预设水分含量的测试样品。然后将优化的三角激励应用于测试样本以估计其绝缘条件。实验结果表明,使用优化的三角激励可提供有关油纸绝缘状况的信息,且准确性更高。为了研究提出的等效电路模型的适用性,还对实际变压器进行了实验。

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