ON THE CHOICE OF THE OPTIMAL POINTS OF OPENING IN CITY POWER GRIDS IN THE CONDITIONS OF THE SMART GRID
https://doi.org/10.21122/1029-7448-2019-61-3-207-219
Abstract
One of the main tasks being solved for all electric networks with open topology, including city electric networks, viz. a task of the choice of optimum points of disconnection, has been improved. It is shown that saturation of urban networks with distributed sources of small-scale generation causes the fact that mode parameters being determined in the urban SMART GRID conditions become observable. Therefore, the majority of problems of mode control, typical for urban distribution electric networks of a traditional design, lose their relevance under the SMART GRID conditions. The main technological task is to improve the selection of optimal points of disconnection of networks. Urban electric networks of the Belarusian United Energy System are actively saturated with distributed sources of small-scale generation, which can be connected to high-voltage buses of consumer transformer substations, including the ones on the load side; and they are equipped with automation to ensure synchronous operation with the power system and maintain autonomous operation. Therefore, the accounting of such generating sources becomes necessary as one of the objectives of managing the modes of urban electric networks (both traditional ones and the ones in the SMART GRID conditions). In the article the technique and algorithm of choice of optimal points of disconnection of city electric networks are proposed taking into account various conditions of application of sources of small generation: when the source operates in parallel with an electric network and has constant active and reactive generation or energizes the load isolated from a network taking into account restrictions of the power generated by a source. The solution of this task makes it possible to reduce losses of power and the electricity in a network much more than because of implementation of any other operational action. The developed algorithm was tested through the example of optimization of the points of disconnection of the fragment of the urban distribution network of 10 kV. An effective solution to the problem of choosing the initial positions of the points of disconnection of urban networks based on the Dijkstra algorithm is also proposed, which significantly reduces the time of their optimization.
About the Authors
M. I. FursanovBelarus
Address for correspondence: Fursanov Mishail I. – Belarusian National Technical University, 65/2 Nezavisimosty Ave., 220013, Minsk, Republic of Belarus. Tel.: +375 17 292-65-82 elsyst@bntu.by
A. A. Zоlotoy
Belarus
References
1. Fursanov M. I. (2017) Circuit-Design Solutions and Information Support of City Electric Networks in the Conditions of the Smart Grid. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii = Energetika. Proceedings of the CIS Higher Educational Institutions, 60(5), 393-406 (in Russian). https://doi.org/10.21122/1029-7448-2017-60-5-393-406.
2. Fursanov M. ?., Zalotoy A. A. (2018) On the Management of Urban Electric Networks in the Conditions of the Smart Grid. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii = Energetika. Proceedings of the CIS Higher Educational Institutions, 61(1), 15-27 (in Russian). https://doi.org/10.21122/1029-7448-2018-61-1-15-27
3. Kobets B. B., Volkova I. O. (2010) Innovative Development of Electric Power Industry on the Basis of SMART GRID Concept. Moscow, “Energiya” IAC. 208 (in Russian).
4. Fursanov M. I., Zolotoy A. A., Makarevich V. V., Mukha A. N. (2009) Methodical Principles of Calculation and Analysis of Opened Power Network with Several Power Supply Sources. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii = Energetika. Proceedings of the CIS Higher Educational Institutions, (3), 5-13 (in Russian).
5. Fursanov M. I., Zalatoi A. A., Makarevich V. V. (2011) Account of Consumer Power Sources in Calculations of Distributive Electrical Networks of 6–10 kV. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii = Energetika. Proceedings of the CIS Higher Educational Institutions, (4), 11–15 (in Russian).
6. Voropai N. I. (2005) Distributed Generation in Electric Power Systems. Malaya energetika: tr. Mezhdunar. nauch.-tekhn. konf., Moskva, 11–14 okt. 2005 g. [Small Power Engineering: Proceedings of the International Scientific-and-Technical Conference, Moscow, 11-14 Oct., 2005]. Moscow, 12–14 (in Russian).
7. Gerasimenko A. A., Fedin V. T. (2006) Transmission and Distribution of Electrical Energy. Rostov-on-Don, Feniks Publ.; Krasnoyarsk, Izdatel'skie proekty Publ. 720 (in Russian).
8. Fursanov M. I., Mukha A. N. (2000) Software and Computing Complex "GorSr" for Calculation and Optimization of Distribution (Urban) Electrical Networks 10 (6) kV. Energetika. Izvestiya Vysshikh Uchebnykh Zavedenii = Energetika. Proceedings of the CIS Higher Educational Institutions, (3), 34–39 (in Russian).
9. Gapanyuk S. G., Koval'chuk D. V. (2014) Finding the Optimal Cut-Points of the Contours in Closed Networks of 6-10 kV with the Use of Computers. Aktual'nye problemy energetiki: materialy 69 nauch.-tekhn. konf. studentov i aspirantov [Topical Problems of Power Engineering: Proceedings of the 69th Scientific-and-Technical Conference of Bachelor and PhD Students]. Minsk, Belarusian National Technical University, 87—88 (in Russian).
10. Shortest Paths from One Vertex. Available at: http:// comp-science.narod.ru/KPG/Deikstr.htm. (accessed 15 June 2016) (in Russian).
Review
For citations:
Fursanov M.I., Zоlotoy A.A. ON THE CHOICE OF THE OPTIMAL POINTS OF OPENING IN CITY POWER GRIDS IN THE CONDITIONS OF THE SMART GRID. ENERGETIKA. Proceedings of CIS higher education institutions and power engineering associations. 2018;61(3):207-219. (In Russ.) https://doi.org/10.21122/1029-7448-2019-61-3-207-219