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DOI: https://doi.org/10.15407/techned2016.01.073

PRACTICAL APPLICATION PECULIARITIES OF AUTONOMOUS DIAGNOSTIC COMPLEXES FOR THERMAL CONTROL OF OVERHEAD POWER LINES

Journal Tekhnichna elektrodynamika
Publisher Institute of Electrodynamics National Academy of Science of Ukraine
ISSN 1607-7970 (print), 2218-1903 (online)
Issue № 1, 2016 (January/February)
Pages 73 – 80

 

Authors
S.Babak1, M.Myslovych2
1 – State enterprise «STC of emerging technologies of the NAS of Ukraine»,
Mashynobudivnyi lane, 28, Kyiv, 03067, Ukraine,
e-mail: Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript
2 – Institute of Electrodynamics of the NAS of Ukraine,
Peremohy ave., 56, Kyiv-57, 03680, Ukraine,
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Abstract

Using thermal imaging equipment, installed on unmanned quadrocopter, experimental researches of temperature condition of the overhead power transmission line wires were conducted. Provided an example of spline functions statistical method application for prediction of time interval where, under certain conditions, it is possible to reach unacceptable temperatures for studied overhead power transmission line wires. References 14, figures 4, table 1.

 

Key words: overhead power transmission line, autonomous diagnostic system, unmanned aerial vehicle, prognosis of overhead power transmission line wires temperature conditions.

 

Received:    20.10.2015
Accepted:    29.12.2015
Published:   29.01.2016

 

References

1. Babak S.V., Myslovich M.V., Sysak R.M. Statistical diagnostics of electrical equipment.  Kiеv: Institut Elektrodinamiki Natsionalnoi Akademii Nauk Ukrainy.  2015.  456 p. (Rus)
2. Butkevych O.F., Tutyk V.L. Monitoring and diagnostics of power facilities Ukraine on the basis of complex "Regina". Hidroenerhetyka Ukrainy.  2010.  No 3.  P. 46–49. (Ukr)
3. KuzminV.V., Livshits A.L., Shpatenko V.S. Low-cost and energy-saving technologies of rehabilitation of turbine generators – the basis of technical re-equipment of energy in Ukraine. Elektromekhanichni ta Enerhozberihaiuchi Systemy.  2011.  No 2(14).  P. 90–92. (Rus)
4. Levinson A., Kottik D., Knizhnik R., Frenkel L. Wireless system of partial discharge online monitoring to determine the level of contamination of the linear insulation high-voltage power lines. CIGRE, 2012, B2-205. Available at: http://www.cigre.org (accessed 20.10.2015)
5. The methodology for calculating the current loads limit on conditions of heating cables for existing power lines.  Moskva: SPO Soiuztekhenergo, 1987.  36 p. (Rus)
6. Nikiforov E.P. On increasing the load capacity of the existing overhead line current. Elektricheskie Stantsii.  2008.  No 11.  P. 33–37. (Rus)
7. Rules of electrical networks. Cabinet of Ministers of Ukraine. Resolution № 209 of 4 March 1997.  Official Bulletin of Ukraine.  1997.  No 10.  28 p. (Ukr)
8. Rules of technical operation of electrical consumers in the new edition of 2012. Order of the Ministry of Energy and Coal Industry of Ukraine No 91 from 13.02.2012.  Kyiv, 2012.  77 p. (Ukr)
9. On the ground of Energy and the legal regime of special zones of energy facilities. The Law of Ukraine, №5460-VI (5460-17), 16.02.2012.  Vіdomostі Verkhovnoi Rady.  2014.  No 2-3.  Article 41. (Ukr)
10. Satsuk E.I., Luzhkovsky Yu.I. Method of prognostication of overload of air-tracks of electricity transmission for the automatic crisis against control.  Izvestiia VUZov. Elektromekhanika.  2015.  No 2(538).  P. 49–52.
11. Samarin A., Masalov V. Modern monitoring technology of overhead power lines. Control Engineering Russia.  2013.  No 3(45).  P. 88–94. (Rus)
12. Stognii B.S., Kyrylenko O.V., Butkevych O.F., Sopel M.F., Rybina O.B., Tutyk V.L. The system of collecting and processing information recorded complex "Regina - F".  Pratsi Instytutu Elektrodynamiky Natsionalnoi Akademii Nauk Ukrainy. 2011.  No 29.  P. 35–46. (Ukr)
13. Intelligent monitoring system of overhead power lines. Available at: http://www.energo-bit.ru/ (accessed 20.10.2015)
14. Khimjuk I.V., Myslovich M.V., Sysak R.M., Zvarich V.N. Method for estimation of power electrical equipment reliability based on statistical splines. Prezeglad Elektrotechniczny.  2009.  No 4.  P. 83–85.

 

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