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Evaluation of corona-caused aging of ADSS fiber-optic cables
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Paper# TR08-080
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G. G. Karady, M. Torgerson, D. Torgerson, J. Wild, and M. W. Tuominen, "Evaluation of corona-caused aging of ADSS fiber-optic cables," in IEEE Transmission and Distribution Meeting, 1999, Paper# TR08-080.
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UK power utilities' experience with optical telecommunications cabling systems
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Carlton, G.1
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ADSS fiber optic cable in HV electric fields - Corona considerations
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M. W. Tuominen, "ADSS fiber optic cable in HV electric fields - Corona considerations," in IEEE Corona Effects Working Group, Feb. 1996.
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Applicability of all-dielectric self supporting cable systems to very high voltage overhead power lines
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C. N. Carter, J. Deas, N. R. Haigh, and S. M. Rowland, "Applicability of all-dielectric self supporting cable systems to very high voltage overhead power lines," in 46th Proc. Intl. Wire and Cable Symposium, 1997, pp. 622-631.
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Carter, C.N.1
Deas, J.2
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Arc control devices for use on all-dielectric self-supporting optical cables
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C. N. Carter, "Arc control devices for use on all-dielectric self-supporting optical cables," IEE Proc.-A, vol. 140, pp. 357-361, Sept. 1993.
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Carter, C.N.1
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National grid
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Optical Fiber Task Force, Tampa, FL
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1998 IEEE PES Winter Meeting
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An improved model for the electromagnetic compatibility of all-dielectric self-supporting fiber optic cable and high voltage power lines
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to be published
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R. G. Olsen, "An improved model for the electromagnetic compatibility of all-dielectric self-supporting fiber optic cable and high voltage power lines," IEEE Trans. Electromag. Compat., to be published.
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IEEE Trans. Electromag. Compat.
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Olsen, R.G.1
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Laboratory simulation of dry band arcing on all-dielectric self-supporting fiber optic cable near high voltage power lines
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Seattle, WA
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_, "Laboratory simulation of dry band arcing on all-dielectric self-supporting fiber optic cable near high voltage power lines," in 1999 IEEE EMC Society Symposium, Seattle, WA.
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1999 IEEE EMC Society Symposium
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Mathematical model of dry band arcing on self-supporting all dielectric optical cables strung on overhead power lines
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C. N. Carter and M. A. Waldron, "Mathematical model of dry band arcing on self-supporting all dielectric optical cables strung on overhead power lines," IEE Proceedings-C, vol. 139, no. 3, pp. 185-196, May 1992.
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Carter, C.N.1
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Progress in the long term testing of an all-dieectric self-supporting cable for power system use
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12th CIRED, Birmingham, UK, May paper 3.16
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G. Carleton, C. N. Carter, and A. J. Peacock, "Progress in the long term testing of an all-dieectric self-supporting cable for power system use," in 12th CIRED, Birmingham, UK, May 1993, IEE Conf. Pub. no. 373, paper 3.16.
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D. Smith, "Private communication," ESKOM, Republic of South Africa.
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Smith, D.1
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33749882881
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Continued investigations of ADSS designs and reliability considerations with respect to field voltage tracking, and cable installation practices
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D. A. Keller, D. J. Benzel, J. P. Bonicel, C. Bastide, and F. Davidson, "Continued investigations of ADSS designs and reliability considerations with respect to field voltage tracking, and cable installation practices," in 1997 Intl. Wire and Cable Proceedings, pp. 24-31.
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ADSS jacket arc resistant material tests
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M. D. Johnson and J. O. Lo, "ADSS jacket arc resistant material tests," Bonneville Power Admin., US Dept. of Energy, Laboratory Services Report #TNF(M)-98-24a, January 21, 1999.
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Bonneville Power Admin., US Dept. of Energy, Laboratory Services Report #TNF(M)-98-24a
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Johnson, M.D.1
Lo, J.O.2
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15
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0024128767
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The development of a track resistant sheathing material for aerial optical fiber cables
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Canterbury, UK
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J. C. G. Wheeler, M. L. Lissenburg, J. D. S. Hinchcliffe, and M. E. Slevin, "The development of a track resistant sheathing material for aerial optical fiber cables," in 5th Intl. Conf. On Dielectric Materials and Applications, Canterbury, UK, 1988, pp. 73-76.
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5th Intl. Conf. on Dielectric Materials and Applications
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Wheeler, J.C.G.1
Lissenburg, M.L.2
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Slevin, M.E.4
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