THE CONCEPT OF LINE AUTOMATION SYSTEM AS A COMPONENT OF SMART NETWORKS OF THE FUTURE
Article_6 PDF

Keywords

Smart Grid
power line
line automation system
measurement and monitoring system
control actions
software and hardware complex

How to Cite

Buslavets О. ., O. Martyniuk, O. . Savchenko, O. . Miroshnyk, and S. . Diubko. “THE CONCEPT OF LINE AUTOMATION SYSTEM AS A COMPONENT OF SMART NETWORKS OF THE FUTURE”. Proceedings of the Institute of Electrodynamics of the National Academy of Sciences of Ukraine, no. 51, Oct. 2018, p. 040, https://prc.ied.org.ua/index.php/proceedings/article/view/173.

Abstract

The article reflects the authors' vision on the prospects for the development of automation tools used on transmission lines. The authors overviewed briefly the existing elements of transmission lines automation - monitoring systems for various processes, actuating devices. The approach for the integration of individual elements of automation on the PL into a single set of software is offered. It gives grounds for introducing the concept of an automated control system of technological processes of the transmission line (ACSTP PL). The ACSTP PL structural scheme of as a potential component of "smart" networks is reviewed, the group of the monitoring system sensors of the line are described and their general purpose is described. The general requirements for the construction of ACSTP PL, their functional capabilities are formulated. Prospects for the implementation of ACSTP PL and their key technologies are projected. References 10, figures 2, table.

Article_6 PDF

References

Stognіy B.S., Kirilenko O.V., Prakhovnik A.V., Denysiuk S.P. The evolution of smart grids and their prospects in Ukraine. Tehnіchna elektrodynamika. 2012. No 5. P. 52–65. (Ukr)

Peabody Evolution of real-time monitoring and its future benefits. Proc. 13th Int. Workshop on Atmospheric Icing on Structures. 2009. P. 156–161.

Savchenko O.A., Diubko S.V. Perspective ways of improvement of automated control systems of ice formation on power lines. Problemi energozabezpechennya ta energozberezhennya v APK Ukrayini. Kharkiv: KhNTUA, 2016. Vol. 175. P. 20–23. (Ukr)

Couture P. Smart Power Line and photonic deicer concepts for transmission-line capacity and reliability improvement. Cold Regions Science and Technology. 2011. Vol. 65, No 1. P. 13–22.

IEC/TR 61850-1 Ed. 2.0 b:2013 Communication networks and systems for power utility automation - Part 1: Introduction and overview, IEC Std. 2013.

Future Inspection of Overhead Transmission Lines. Palo Alto: EPRI, Tech. Rep. 1016921, 2008.

Padilla E. Substation automation systems: design and implementation. Chichester: Wiley, 2016. 251 p.

Kyrylenko O.V., Blinov I.V., Tankevych S.E. Smart Grid and organization of information exchange in electric power systems. Tehnіchna elektrodynamika. 2012. No 3. P. 47–48. (Ukr)

Draft IEC TR 61850-90-6 (57/1615/DC): Communication networks and systems for power utility automation Part 90-6: Use of IEC 61850 for Distribution Automation Systems.

Feeder Operations in the Blink of an Eye. [Online]. Available: www.tdworld.com/ami/feeder-operations-blink-eye.

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Copyright (c) 2018 Buslavets О. А., Martyniuk О.V., Savchenko O.A., Miroshnyk O.O., Diubko S.V.

Downloads

Download data is not yet available.