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@article{VVGUM_2017_20_5_a6, author = {V. I. Usacheva and A. V. Volkova}, title = {Software development to assess the economic efficiency of operation and the consequences of upgrading the equipment of electric grid companies}, journal = {Matemati\v{c}eska\^a fizika i kompʹ\^uternoe modelirovanie}, pages = {63--75}, publisher = {mathdoc}, volume = {20}, number = {5}, year = {2017}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/VVGUM_2017_20_5_a6/} }
TY - JOUR AU - V. I. Usacheva AU - A. V. Volkova TI - Software development to assess the economic efficiency of operation and the consequences of upgrading the equipment of electric grid companies JO - Matematičeskaâ fizika i kompʹûternoe modelirovanie PY - 2017 SP - 63 EP - 75 VL - 20 IS - 5 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/VVGUM_2017_20_5_a6/ LA - ru ID - VVGUM_2017_20_5_a6 ER -
%0 Journal Article %A V. I. Usacheva %A A. V. Volkova %T Software development to assess the economic efficiency of operation and the consequences of upgrading the equipment of electric grid companies %J Matematičeskaâ fizika i kompʹûternoe modelirovanie %D 2017 %P 63-75 %V 20 %N 5 %I mathdoc %U http://geodesic.mathdoc.fr/item/VVGUM_2017_20_5_a6/ %G ru %F VVGUM_2017_20_5_a6
V. I. Usacheva; A. V. Volkova. Software development to assess the economic efficiency of operation and the consequences of upgrading the equipment of electric grid companies. Matematičeskaâ fizika i kompʹûternoe modelirovanie, Tome 20 (2017) no. 5, pp. 63-75. http://geodesic.mathdoc.fr/item/VVGUM_2017_20_5_a6/
[1] Electrical Energy. Electro-Magnetic Compatibility of Technical Equipment. Quality Norms of Electric Energy in Power Supply Systems of General Purpose, GOST 32144-2013, v. III, Standartinform Publ., Moscow, 2014, 16 pp.
[2] Electrical Energy. Electro-Magnetic Compatibility of Technical Equipment. Methods of Measuring Quality Parameters of Electrical Energy, GOST 30804.4.30-2013, Standartinform Publ., Moscow, 2014, 52 pp.
[3] Electro-Magnetic Compatibility of Technical Equipment. Flickermeter. Functional and Design Requirements, GOST R 51317.4.15-2012 (MEK 61000-4-15:2010), Standartinform Publ., Moscow, 2014, 32 pp.
[4] Electro-Magnetic Compatibility of Technical Equipment. General Guidance for Measuring Instruments and Measurement of Harmonics and Interharmonics for Power Supply Systems and Connected Technical Means, GOST 30804.4.7-2013 (IEC 61000-4-7:2009), Standartinform Publ., Moscow, 2013, 34 pp.
[5] The Conception of Diagnostics of the Electro-Technical Equipment of Substations and Transmission Lines Electrical Networks of FSK EES OJSC, Moscow, 2005, 187 pp.
[6] Provision of Rosset OJSC on the Uniform Technical Policy in an Electro-Network Complex, http://www.fsk-ees.ru/upload/docs/ETP_FSK_EES_2014_02_06.pdf
[7] D. Paoletti, G. Kherman, “Monitoring of Indicators of Electro-Technical Equipment Failures and Bringing Planned Shutdowns to Zero: the Past, the Present and the Future of Maintenance Methods”, SFERA. Neft i gaz, 3:47 (2015), 142–151
[8] I. V. Sakharova, “The Analysis of Quantitative Assessment of Reliability and Quality of Power Supply of Consumers in the World and Russian Practice”, Energonadzor, 5:57 (2014), 22–24
[9] I. V. Sakharova, “On the Accounting of Quality of Services in Tariff Regulation of Distributive Electro-Network Companies in Russian and Foreign Practice”, Modern Economy: Problems and Solutions, 5:41 (2013), 43–52