Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 9 SI
Page No. 7141 - 7149

Information and Computer Complex for Identification of Single-Phase Earth Faults in Electric Networks of 6-10 kV

Authors : Lyudmila P. Andrianova, Eduard R. Bayburin, Ildar I. Gabitov, Rustam R. Galiullin, Vladimir Yu. Kabashov, Andrey V. Linenko, Dmitriy P. Yukhin and Rinat B. Yarullin

References

Abdullazyanov, R.E., 2014. Determination of the fault location in distribution electrical networks with voltage of 6-35 kV according to their frequency characteristics. Ph.D Thesis, Biblioteka Kgeu, Kazan, Russia.

Abe, M., N. Otsuzuki, T. Emura and M. Takeuchi, 1995. Development of a new fault location system for multi-terminal single transmission lines. IEEE. Trans. Power Delivery, 10: 159-168.
CrossRef  |  Direct Link  |  

Borkovsky, S.O., Т.S. Goreva and T.I. Goreva, 2014. The problem of diagnostics of Single-phase earth faults in networks with low Ground-fault currents. Fundam. Res., 9: 954-959.

Brahma, S.M., 2005. Fault location scheme for a multi-terminal transmission line using synchronized Voltage measurements. IEEE Trans. Power Delivery, 20: 1325-1331.
CrossRef  |  

Brahma, S.M., 2006. New fault location scheme for a Two-terminal transmission line using synchronized phasor measurements. Proceedings of the IEEE International Conference and Exhibition on PES Transmission and Distribution, May 21-24, 2006, IEEE, Dallas, Texas, USA., pp: 853-857.

GEM., 2015. L90: Line Current differential System. GE Multilin Inc., Canada, Pages: 718.

Izykowski, J., E. Rosolowski, P. Balcerek, M. Fulczyk and M.M. Sana, 2010. Accurate noniteterative fault location alqoritm utilizinq Two-end unsynchronized measurement. IEEE. Trans. Power Delivery, 25: 72-80.

Kezunovic, M. and B. Perunicic, 1995. Synchronized samplinq improves fault location. IEEE. Comput. Appl. Power, 8: 30-33.

Krasnykh, A.A., I.L. Krivoshein and A.L. Kozlov, 2017. Investigation of the current spreading zone with Single-phase earth fault. Energetic, 6: 1-3.

Kulikov, A.L. and I.A. Lukichev, 2016. Determination of the fault location of the transmission line based on the instantaneous values of the of emergency events oscillograms. Bull. ISEU., 5: 16-21.

Lebedev, V.D., V.A. Shuin and G.A. Filatova, 2014. Study and modeling of zero sequence current sensors in the transient modes in Matlab. Proceedings of the 2014 10th International Conference on Vacuum Electron Sources (IVESC), June 30-July 4, 2014, IEEE, St. Petersburg, Russia, ISBN:978-1-4799-5772-9, pp: 1-2.

Patynowski, D., J. Cardenas, D. Menendez, Z. Zhang and J.M. Roca et al., 2015. Fault locator approach for high-impedance grounded or ungrounded distribution systems using synchrophasors. Proceedings of the Annual 68th International Conference for Protective Relay Engineers, March 30-April 2, 2015, IEEE, TX, USA., pp: 302-310.

Thompson, А., 2011. Smart fault location for smart grids. IEEE. Trans. Smart Grid, 2: 11-22.

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