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http://dx.doi.org/10.4313/TEEM.2017.18.5.246

A Review of the Flashover Performance of High Voltage Insulators Constructed with Modern Insulating Materials  

Khatoon, Shabana (Department of Electrical Engineering, Zakir Husain College of Engineering & Technology, Aligarh Muslim University)
Khan, Asfar Ali (Department of Electrical Engineering, Zakir Husain College of Engineering & Technology, Aligarh Muslim University)
Singh, Sakshi (Department of Electrical Engineering, Zakir Husain College of Engineering & Technology, Aligarh Muslim University)
Publication Information
Transactions on Electrical and Electronic Materials / v.18, no.5, 2017 , pp. 246-249 More about this Journal
Abstract
Pollution flashover of outdoor insulators is a common risk, which affects the safe operation of overhead transmission networks. Early electrical power systems, which feature insulators made from ceramic materials have been used all over the world with good performance. At present, non-ceramic insulators are in common use, as a result of their good electrical as well as mechanical properties. The aim of this paper is to discuss and compare the flashover performance of insulators typically used in power lines, such as, porcelain, ethylene-propylene-diene-monomer (EPDM) rubber, room temperature vulcanized (RTV) and high temperature vulcanized (HTV) coated silicone rubber. The effect of various parameters, including the severity of pollution, ice accumulation, and shade profile, are considered.. From the studies reviewed it was concluded that there is a distinct difference in the flashover voltages of different types of insulators, and the silicone provides the best flashover performance of all insulating materials.
Keywords
Flashover voltage; Environmental pollution; ESDD; Ceramic material; Composite materials;
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1 R. T. Waters, A. Haddad, H. Griffiths, N. Harid, and P. Sarkar, IEEE Trans. Dielectr. Electr. Insul., 17, 417 (2010). [DOI: http://doi.org/10.1109/TDEI.2010.5448096]   DOI
2 J.S.T. Looms, Insulators for High Voltage (publisher, place, 1987).
3 J. J. Park, J. S. Kim, C. Y. Yoon, S. S. Shin, J. Y. Lee, J. H. Cheong, Y. W. Kim, and G. B. Kang, Trans. Electr. Electron. Mater., 16, 82 (2015). [DOI: http://doi.org/10.4313/TEEM.2015.16.2.82]   DOI
4 M. Tunay, e-Journal of New World Science Acadamy, Natural and Applied Science, 2, 274 (2007).
5 J. Y. Lee, J. J. Park, J. S. Kim, S. S. Shin, C. Y. Yoon, J. H. Cheong, Y. W. Kim, and G. B. Kang, Trans. Electr. Electron. Mater., 16, 74 (2015). [DOI: http://doi.org/10.4313/TEEM.2015.16.2.74]   DOI
6 L. Xidong, W. Shaowu, F. Ju, and G. Zhicheng, IEEE Trans. Dielectr. Electr. Insul., 6, 586 (1999).   DOI
7 M. Parvathavarthini and N. B. Prakash, International Journal of Advanced Engineering Applications, 3, 60 (2010).
8 R. Hackam, IEEE Trans. Dielectr. Electr. Insul., 6, 557 (1999).   DOI
9 R. G. Houlgate and D. A. Swift, IEEE Trans. Power Del., 5, 1944 (1990).   DOI
10 A. D. Lao, R. S. Gorur and J. Chang, IEEE Trans. Power Del., 9, 2000 (1994).   DOI
11 A. C. Baker, M. Farzaneh, R. S. Gorur, S. M. Gubanski, R. J. Hill, G. G. Karady, and H. M. Schneider, IEEE Trans. Power Del., 24, 1633 (2009).
12 G. Heger, H. J. Vermeulen, J. P. Holtzhausen, and W. L. Vosloo, IEEE Trans. Dielectr. Electr. Insul., 17, 513 (2010).   DOI
13 S. Venkataraman and R. S. Gorur, IEEE Trans. Dielectr. Electr. Insul., 13, 862 (2006).   DOI
14 L. L. Grigsby, The Electric Power Engineering Handbook, 3rd ed. (CRC Press Taylor and Frances Group, 2012).
15 X. Jiang, J. Yuan, Z. Zhang, J. Hu, and C. Sun, IEEE Trans. Power Del., 22, 2567 (2007).   DOI
16 A. Abbasi, A. Shayegani, and K. Niayesh, IEEE Trans. Power Del., 29, 1814 (2014). [DOI: http://doi.org/10.1109/TPWRD.2013.2285223]   DOI
17 A. Ibrahim, L. Nasrat, and H. Elassal, International Journal of Innovative Research in Electrical, Electronics, Instrumentation and Control Engineering, 2, 1884 (2014).
18 Y. Sabri, M. Farzaneh, and J. Zhang, Proc. 2006 IEEE Conference on Electrical Insulation and Dielectric Phenomena (IEEE, Kansas City, USA, 2006) p. 437. [DOI: http://doi.org/10.1109/CEIDP.2006.311963]
19 J. Hu, C. Sun, X. Jiang, Z. Zhang, and L. Shu, IEEE Trans. Dielectr. Electr. Insul., 14, 1347 (2007). [DOI: http://doi.org/10.1109/TDEI.2007.4401217]   DOI
20 M. Farzaneh, J. Zhang, and X. chen, IEEE Trans. Power Del., 12, 325 (1997). [DOI: http://doi.org/10.1109/61.568256]
21 Y. Liu, S. Gao, D. Huang, T. Yao, X. Wu, Y. Hu, and W. Cai, IEEE Trans. Dielectr. Electr. Insul., 17, 434 (2010). [DOI: http://doi.org/10.1109/TDEI.2010.5448098]   DOI
22 F. Yin, X. Jiang, M. Farzaneh, and J. Hu, Proc. 2012 International Conference on High Voltage Engineering and Application (IEEE, Shanghai, China, 2012) p. 413. [DOI: http://doi.org/10.1109/ICHVE.2012.6357138]
23 B. Zegnini, D. Mahi, and A. Chaker, Acta Electrotechnica et Information, 9, 17 (2009).