@article{VKAM_2013_2_a3,
author = {A. S. Serovetnikov and V. P. Sivokon'},
title = {Geomagneticinduced currentsin electric power systems},
journal = {Vestnik KRAUNC. Fiziko-matemati\v{c}eskie nauki},
pages = {24--32},
year = {2013},
number = {2},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VKAM_2013_2_a3/}
}
A. S. Serovetnikov; V. P. Sivokon'. Geomagneticinduced currentsin electric power systems. Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 2 (2013), pp. 24-32. http://geodesic.mathdoc.fr/item/VKAM_2013_2_a3/
[1] Geomagnetically Induced Currents in the Finnish High-Voltage Power System,, No2 Finnish Meteorological Institute, Reports, 2000
[2] http://eurisgic.org/measuring
[3] D. H. Boteler, R. Pirjola, L. Trichtchenko, “On calculating in technological systems at the Earth's surface by a wide electrojet”, Solar-Terrestrial Physics, 62 (2000), 1311–1315 | DOI
[4] V. P. Sivokon, A. S. Serovetnikov, A. V. Pisarev, “Vysshie garmoniki kak indikator geomagnitno- indutsirovannykh tokov”, Elektro, 2011, no. 3, 30-34
[5] M. Lahtinen, R. Pirjola, “Currents produced in earthed conductor networks by geomagnetically-induced electric fields”, Annales Geophysicae, 1995, no. 4, 479-484
[6] A. Viljanen, H. Nevanlinna, K. Pajunp, A. Pulkkinen, “Time derivative of the horizontal field as an activity indicator”, Annales Geophysicae, 2001, no. 19, 1107–1118 | DOI
[7] I. I. Kartashev, N. D. Dyk, “Vliyanie kharakteristik namagnichivaniya transformatora spektr generiruemykh im vysshikh garmonik”, Vestnik MEI, 2007, no. 1, 56–63
[8] R. Pirjola, “Electromagnetic induction in the earth by a plane wave or by fields of line currents harmonic in time and space”, Geophysica. Nos., 18:1-2, 1–161
[9] R. Pirjola, A. Viljanen, “Complex image method for calculating electric and magnetic fields produced by an auroral electrojet of finite length”, Ann. Geophysicae, 16 (1998), 1434–1444 | DOI
[10] J. G. Kappenman, “Geomagnetic Storms and Their Impact on Power Systems”, IEEE Power Eng, 1996, no. 5
[11] N. Mohan, J. G. Kappenman, V. D. Albertson, “Harmonics and switching transients in the presence of geomagnetically induced currents”, IEEE transaction on power apparatus and systems, 2 (1981)
[12] V. P. Klimov, A. D. Moskalev, “Problemy vysshikh garmonik v sovremennykh sistemakh elektropitaniya”, Prakticheskaya silovaya elektronika, Nauch.-tekhn. sb., v. 5, eds. G. M. Malyshkov, A. V. Lukin, MMP-Irbis, M., 2002
[13] N. D. Dyk, Pazrabotka metodiki issledovaniya rasprostraneniya vysshikh garmonik v elektro-energeticheskikh sistemakh, disc. ...kand. tekhn. nauk, MEI, 2008
[14] J. G. Kappenman, S. R. Norr, G. A. Sweezy, D. L. Carlson, V. D. Albertson, J. E. Harder, B. L. Damsky, “GIC Mitigation: A Neutral Blosing Bypass Device to Prevent the Flow of GIC in Power Systems”, IEEE PES Special Publication 90TH0357-4-PWR, Special Panel Session (July 17, 1990), 45–52
[15] J. G. Kappenman, Low-Frequency Protection Concepts for the Electric Power Grid: Geomagnetically Induced Current (GIC) and E3 HEMP Mitigation, Metatech Corporation, 2010