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Power sharing system with use of DC-DC converter and intermediate circuit of VSI inverter

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article describes issues related to power distribution between a power plant system consisting of a synchronous generator operating at variable shaft speed and a super capacitor which is a short-term source of electricity for sudden electrical load changes. In the presented system a generator and a battery of supercapacitors were connected with use of power electronic converters. The synchronous generator is connected to the DC network via an AC-DC converter and the super capacitor is connected with means of an isolated DC-DC converter. Both converters have been equipped with auctioneering diodes to prevent the flow of equalizing currents. The theoretical basis and results of experimental research obtained on a laboratory test-stand equipped with the aforementioned system are presented.
Rocznik
Tom
Strony
69--84
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
  • Maritime University of Szczecin
  • Maritime University of Szczecin
  • Maritime University of Szczecin
Bibliografia
  • [1] Twidell J.W., Weir A.D., Renewable energy resources, Taylor & Francis (2015).
  • [2] Benson C.L., Magee C.L., On improvement rates for renewable energy technologies: solar PV, wind turbines, capacitors, and batteries, Renewable Energy, 2014, 68, pp. 745–751.
  • [3] Khodayar M.E., Barati M., Shahidehpour M., Integration of high reliability distribution system in microgrid operation, IEEE Trans. Smart Grid, 2012, 3, (4), pp. 1997–2006.
  • [4] Brown H.E., Suryanarayanan S., Natarajan S.A., et al., Improving reliability of islanded distribution systems with distributed renewable energy resources, IEEE Trans. Smart Grid, 2012, 3, (4), pp. 2028–2038.
  • [5] Quiggin D., Cornell S., Tierney M., et al., A simulation and optimisation study: towards a decentralised microgrid, using real world fluctuation data, Energy, 2012, 41, (1), pp. 549–559.
  • [6] Ton D.T., Wang W.T.P., A more resilient grid: The U.S. department of energy joins with stakeholders in an R&D plan, IEEE Power Energy Mag., 2015, 13, (3), pp. 26–34.
  • [7] Gouveia C., Moreira J., Moreira C.L., et al., Coordinating storage and demand response for microgrid emergency operation, IEEE Trans. Smart Grid, 2013, 4, (4), pp. 1898–1908.
  • [8] Wenlong J., Chean H.L., Shung H., Wallace W., M. Ling, D. Wong, Battery-supercapacitor hybrid energy storage system in standalone DC microgrids’, IET Renewable Power Generation 11(4), November 2016.
  • [9] Qing-Chang Z., Yu Z., Parallel Operation of Inverters with Different Types of Output Impedance. Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE 2013, IEEE Xplore. pp. 1398-1403. 10.1109/IECON.2013.6699337.
  • [10] Imecs M., Incze I.I., Szabo C., Stator-Field Oriented Control of the Synchronous Generator: Numerical Simulation, International Conference on Intelligent Engineering Systems 2008, ISSN 1543-9259.
  • [11] Baktyono S.A., Study of Field-Oriented Control of a Permanent Magnet Synchronous Generator and Hysteresis Current Control for Wind Turbine Application. The Ohio State University 2006. Available online:https://etd.ohiolink.edu/!etd.send_file?accession=osu1338314559&disposition=inline (accessed 27.06.2018).
  • [12] Kozak M., New concept of ship's power plant system with varying rotational speed gensets, Proceedings of 58th International Conference of Machine Design Departments (ICMD 2017) pages: 170-175, published 2017.
  • [13] Zhao B., Yu Q., Leng Z., Chen X., Switched Z-Source Isolated Bidirectional DC-DC Converter and Its Phase-Shifting Shoot-Through Bivariate Coordinated Control Strategy, IEEE Trans. On Industrial Electronics., vol. 59, no. 12, pp. 4657-4670, Dec. 2012.
  • [14] Carbone R., Energy Storage in the Emerging Era of Smart Grids, Croatia, pp. 161-162, September 2011.
  • [15] Tan N.M.L., Abe T., Akagi H., Topology and Application of Bidirectional Isolated DC-DC Converters, 8th International Conference on Power Electronics - ECCE Asia, Jeju, 2011, pp. 1039-1046.
  • [16] Zakis J., Vinnikov D., Roasto I., Ribbickis L., Quasi-Z-source Inverter based bidirectional DCIDC converter: Analysis of Experimental Results, Compatibility and Power Electronics (CPE), 7th International Conference-Workshop, 2011.
  • [17] Vinnikov D., Roasto I., Zakis J., New Bi-Directional DC/DC Converter for Supercapacitor Interfacing in High-Power Applications, 14th International Power Electronics and Motion Control Conference, EPE-PEMC 2010.
  • [18] Nowak M., Hildebrandt J., Luniewski P., Converters with AC Transformer Intermediate Link Suitable as Interfaces for Supercapacitor Energy Storage, 2004 IEEE 35th Annual Power Electronics Specialists Conference (IEEE Cat. No.04CH37551), Aachen, Germany, 2004, pp. 4067-4073, Vol. 5.
  • [19] Kozak M., Alternating Current Electric Generator Machine Inverters in a Parallel Power Sharing Connection, IEEE ACCESS, Volume: 7, Pages: 32154-32165 Published: 2019.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4d08849c-6d59-49a0-b8cd-4d1d7d440dfc
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