Influence of Metal Pipes in the Environment on Designing the Underground Electrical Installations

Автор: Igor S. Bjelić, Filip N. Marković, Nenad A. Marković, Slobodan N. Bjelić

Журнал: International Journal of Image, Graphics and Signal Processing @ijigsp

Статья в выпуске: 6 vol.12, 2020 года.

Бесплатный доступ

Underground installations are networks of metal pipes and cables in space at a certain distance from the ground surface. Insulating layers of metal pipes of underground installations (gas, plumbing, electrical...) do not provide their full protection against corrosion and breakdowns. In urban areas, wandering currents (electric rail or earthing of power plants) repeatedly increase failures in underground installations in the environment. That is why a certain kind of protection is foreseen for the protection of metal pipes of underground installations against corrosion and destruction from wandering currents. However, until today there is no universal method for calculating the parameters of stationary and quasi-stationary electric fields of wandering currents and a general solution for arbitrary configuration, but it is possible to form a model algorithm for controlling the state and failures of insulation of underground electrical installations. Solutions for wandering currents could be determined by the criterion of similarity to transient currents on power lines. In the paper, in program MATLAB Simulink a simulation for the correction of wandering currents using foreign grounding has been performed on certain parts of underground installations. It has been shown that the solution of the task is possible with help of the model-algorythm which allows a determinaitn of the power on isolation layer of the cable sheat, and with simulation of the different versions of schedule of protective equipment, their optimal schedule could be determined.

Еще

Underground installations, standards, grounding, protection

Короткий адрес: https://sciup.org/15017373

IDR: 15017373   |   DOI: 10.5815/ijigsp.2020.06.01

Список литературы Influence of Metal Pipes in the Environment on Designing the Underground Electrical Installations

  • Z. Bogićević, S. Bjelić, B. Jovanović, M. Mišić, “Neutral grounding points within the general distribution system as an element of environmental protection”, pp. 779-787, 3rd International Academic Conference, Places and Technologies, Belgrade, Serbia, 14.-15.04.2016.
  • L. Van der Sluis, W.R. Rutgers, C.G.A. Koreman, “A physical arc model for the simulation of current zero behaviour of high-voltage circuit breakers”, IEEE Transactions on Power Delivery, pp. 1016–1022, Vol. 7, Issue 2, Apr. 1992, DOI: 10.1109/61.127112.
  • B. Jovanović, S. Bjelić, N. Marković, “Transient Processes on the Elements of Underground Installations”, International Journal of Information Technology and Computer Science, IJITCS 2017, Vol. 9, No. 9, pp. 1–10, DOI: 10.5815/ijitcs.
  • N. Marković, S. Bjelić, U. Jakšić, Z. Bogićević, “Graphical Zero-sequence Cut-offs Method of Determining of Fault to Earth in Electrical Lines”, 9th Symposium on Neural Network Applications in Electrical Engineering, Faculty of Electrical Engineering, University of Belgrade, Serbia, Neurel 2008, pp. 73–76.
  • N. Marković, S. Bjelić, J. Živanić, Z. Bogićević, “Analysis and Estimation of Values of Currents and Voltages at the Disturbances in Induction Machine Using Tested Matlab Simulation”, International Journal of Intelligent Systems and Applications, IJISA 2014, Vol. 7, No. 1, pp. 1–8, DOI: 10.5815/ijisa.2015.01.01.
  • S. Bjelić, “Protection Techniques in Electrical Energy Networks”, pp. 117–118, 2018.
  • Standards: EN 50162, IEC 50364, IEC 50364, IEC 60364-5-54-2012/A11, EN 62561-2-013.
  • MATLAB SIMULINK Sim Power System, Copyright 1984-2002 The Math Works, Version 6.5.0,180913a, June 2, 2000.
  • J. Surutka, “Electromagnetics,” Building book, University of Belgrade, pp. 231–232, 378–386, 1966.
  • B. Ilić, B. Savić, “Influence of stray currents to information and comunication technology” Technical School Center, Infoteh-Jahorina, Vol. 9, Ref. D-13, March 2010, pp. 413–417.
  • M. Tanasković, T. Bojković, D. Perić, “Distribution of electric energy,” Academic Thought, Belgrade, pp. 48–70, 2010.
  • Standards: IEC 62305-1, EN 62305-4.
  • C. Magono, “Thunderstorms”, Elsevier Scientific Publishing Company, 335 Jan van Galenstraat, Amsterdam, The Netherlands. 1980.
  • S. Bjelić, B. Jovanović, Z. Bogićević, N. Marković, I. Bjelić, “Theoretical Model of the Electric Field of Stray Currents in Underground Installations in Urban Environments”, Bjast 2017, Review Article, Vol. 19, Issue 4, 2017/BJAST/31690.
  • N. Marković, S. Bjelić, “Protection against dangerous effects electric current”, Kvark, Kraljevo, pp. 153–192, 2018.
  • L. Van der Sluis, W.R. Rutgers, C.G.A. Koreman, “A physical arc model for the simulation of current zero behaviour of high-voltage circuit breakers”, IEEE Transactions on Power Delivery, pp. 1016–1022, Vol. 7, Issue 2, Apr. 1992, DOI: 10.1109/61.127112.
  • PC EPS Directorate for Electricity Distribution of Serbia, Belgrade, “Technical Recommendation no. 7,” III edition, jun 1996.
  • A.V. Permyakov, R.M. Sultanov, F.Sh. Khafizov, I.F. Khafizov, L.A. Sakeyan, “Еlectrical solution of the dielectric and its influence on flame emission with electromagnetic field,” Сетевое издание «Нефтегазовое дело», 2-2018, pp. 117–128, UDK 614.841.
Еще
Статья научная