Publication Type : Journal Article
Publisher : IEEE
Source : IEEE Transactions on Dielectrics and Electrical Insulation
Url : https://ieeexplore.ieee.org/document/9679724
Campus : Coimbatore
School : School of Engineering
Department : Electrical and Electronics
Year : 2021
Abstract : In this article, a novel technique is proposed for the estimation of ingressed moisture content inside metal oxide surge arrester (MOSA) in service. For the estimation of ingressed moisture content inside a dielectric precisely, knowledge of frequency domain spectroscopy (FDS) characteristics can be useful. However, in traditional FDS measurement, dielectric relaxation characteristics cannot be properly understood due to electrode polarization effect. Therefore, to overcome this problem, dielectric modulus technique is applied in this work. Dielectric modulus can uncover the relaxation characteristics in a dielectric, which is obscured by electrode polarization effect. Therefore, frequency variation of complex dielectric modulus characteristics of MOSA at different ingressed moisture content is analysed using Havriliak-Negami (H-N) relaxation model to investigate the changes in dielectric relaxation behavior with moisture ingression. The findings of the paper reveal that empirically obtained relationship between ingressed moisture content and H-N model parameters can estimate the ingressed moisture content inside a MOSA with an acceptable accuracy.
Cite this Research Publication : A. K. Das, B. Chatterjee and S. Dalai, “A Novel Approach to Estimate the Quantity of Ingressed Moisture Content inside Metal Oxide Surge Arrester using Dielectric Modulus Technique,” IEEE Transactions on Dielectrics and Electrical Insulation, vol. 28, no. 6, pp. 2178-2185, 2021.