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Parameter Identification of the Wide-Band Model of Oil-Impregnated Paper Insulation Using Frequency Domain Spectroscopy |
Du Lin1, Yang Feng1, Wei Chao2, Wang Youyuan1, Wu Xiong3, Ran Liman1 |
1. State Key Laboratory of Power Transmission Equipment & System Security and New Technology Chongqing UniversityChongqing400044 China; 2. State Grid Jiangsu Electric Power Company Research InstituteNanjing 211103 China; 3. State Grid Sichuan Meishan Electric Power Company Meishan 620010 China |
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Abstract To provide underlying knowledge for interpretation of frequency domain spectroscopy (FDS) measurements and characterization of oil-impregnated paper (OIP) insulation status, FDS propertieswere investigated first in this paper based on the extended Debye model (EDM). In particular, a method was proposed to determine values of the resistor and the capacitor in each branch of the EDM using FDS curves. First, two real-life OIP condenser bushings were employed, in whichmoistureingresswas simulated at different levels, and the FDS curves of the two bushings were measured. Thereafter, a fusion method integrating the genetic and Levenberg-Marquardtalgorithms was employed to calculate the model parameters, which solves the problem of pool matching between the EDM and FDS. In this sense, a wide-band model (in the frequency orders between 10-3~103Hz)of dielectric response of OIP insulation has been established. Further, the recovery voltage method (RVM) curves of the two bushingsweretransformed from the resulted EDM. By comparative analysis with the measured RVM results, the proposed method is proven to feature good universality in time and frequency domain. This work presents indications for the quantitativeassessment of OIP insulation condition as further research.
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Received: 12 January 2017
Published: 14 March 2018
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