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.

Voir la notice de l'article provenant de la source Math-Net.Ru

The purpose of this work is to develop an automated system for making decisions on energy quality management, as well as diagnostics and management of electrical equipment. The creation of an intelligent automated system for managing the technical assets of power enterprises in the current conditions of high wear and tear of electric grid equipment, taking into account the changed market conditions, is a very urgent task. The system is aimed at solving the problem of optimization of the company’s network upgrade strategy, which at the current moment is quite acute for the owners of electric grid companies due to the high degree of equipment wear and significant losses of electricity in the medium and low voltage networks during its transmission. The solution of this scientific and technical task will significantly reduce the company’s financial costs when upgrading the power grid equipment, make the renewal process of fixed assets more transparent and financially efficient. The effect from the implementation of this task will allow us to obtain sufficiently reliable information for the management of technical assets on the basis of any aggregated accessible information, regardless of the type of information, and to optimize financial losses in the modernization of power grid equipment, and as a result, to increase the company’s flexibility in tariff formation effect for energy-intensive business in general. The theoretical research in the field of parameters of quality of electric energy and reliability of the equipment, in particular dependence of productivity and safety of the equipment, including electric equipment, on parameters of quality of the electric power, are carried out. The methods of their calculation are shown, and a list of parameters is given that will be used to create data sets in the software product, through which it will be possible to monitor the equipment and make a decision on carrying out repair work.
Keywords: reliability and quality of electricity, electrical networks, electricity, data sets, a system for diagnosing electrical equipment.
@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