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IMPROVING DIELECTRIC DISSIPATION FACTOR OF 420 kV CLASS OIL-SF6 RIP BUSHINGS AT SITE, 17-23.
Harish K. Sharma, Savita Nema, and Rajesh K. Nema
References
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[3] N.S. Jyothi and T.S. Ramu, A model for the temperaturedistribution in resin impregnated paper bushings, 2012 Asia-Pacific Power and Energy Engineering Conf., Shanghai, 2012,1–4.
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[10] M. Chen, X. Liu, P. Xu, and T. Wen, Local inter-foil insulationdeterioration diagnosis and simulation of RIP bushing basedon FDS method, 2018 Condition Monitoring and Diagnosis,Perth, WA, 2018, 1–5.
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[12] J.A. Almendros-Ibanez, J.C. Burgos, and B. Garcia, Trans-former field drying procedures: A theoretical analysis, IEEETransactions on Power Delivery, 24(4), 2009, 1978–1986.
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[14] X. Ning, H. Feng, H. Zhang, P. Liu, Z. Xiang, and Z. Peng,Dielectric properties of multi-layer epoxy resin impregnatedcrepe paper composites, IEEE Transactions on Dielectrics andElectrical Insulation, 22(1), 2015, 161–168.
[15] S. Zhang, Z. Peng, and P. Liu, Inner insulation structureoptimization of UHV RIP oil-SF6 bushing using electro-thermalsimulation and advanced equal margin design method, IEEETransactions on Dielectrics and Electrical Insulation, 21(4),2014, 1768–1777.
[16] CIGRE document on Ageing of liquid impregnated cellulosefor power transformers, WG D1.53, Technical Broucher No.738, 2018.
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[18] Instructions for Erection & Operation, SF6- Switchgear—Transformer Bushing Type RTKG Series GARIP 362. . . 525 kVProduct information, ABB, 2008.
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Abstract
DOI:
10.2316/J.2021.203-0254
From Journal
(203) International Journal of Power and Energy Systems - 2021
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