Mathematical Modeling of Hybrid Electrical Engineering Systems
https://doi.org/10.21122/2227-1031-2016-15-4-322-328
Abstract
About the Authors
A. A. LobatyBelarus
Professor, PhD in Engineering
Address for correspondence: Lobaty Alexander A. - Belаrusian National Technical University, 25/3 F. Skorina str., 220013, Minsk, Republic of Belarus
Tel.: +375 17 266-26-61 mido@bntu.by
Yu. N. Petrenko
Belarus
Associate Professor, PhD in Engineering
I. Elzein
Belarus
Graduate student
A. S. Abufanas
Belarus
Graduate student
References
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4. Priewasser R., Agostinelli M., Unterrieder C., Marsili S., Huemer M. (2014) Modeling, Control and Implementation of DC-DC Converters for Variable Frequency Operation. IEEE Transactions on Power Electronics, 29 (1), 287–301. DOI: 10.1109/TPEL.2013.2248751.
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7. Shen Z., Yan N., Min H. (2011) A Multimode Digitally Controlled Boost Converter with PID Autotuning and Constant Frequency/Constant Off-Time Hybrid PWM Control. IEEE Transactions on Power Electronics, 26 (9), 2588–2598. DOI: 10.1109/TPEL.2011.2111464.
8. Rajasekaran V., Sun J., Heck B. S. (2003) Bilinear Discrete-Time Modeling for Enhanced Stability Prediction and Digital Control Design. IEEE Transactions on Power Electronics, 18 (1), 381–389. DOI: 10.1109/TPEL.2002. 807167.
9. Kazakov I. ?., Artemiev V. ?., Bukhalev V. ?. (1993) Analysis of Random Structure Systems. Moscow, Nauka. 270 (in Russian).
10. Lobaty ?. ?., Busko V. L., Rusak L. V. (2008) Analytical Modeling of Discrete Systems with Phase Control. Doklady BGUIR [Proceedings of Belarusian State University of Informatics and Electronics], 33 (3), 103–110 (in Russian).
11. Pugachev V. S., Sinitsyn I. N. (2004) Theory of Stochastic Systems. Moscow, Logos. 1000 (in Russian).
Review
For citations:
Lobaty A.A., Petrenko Yu.N., Elzein I., Abufanas A.S. Mathematical Modeling of Hybrid Electrical Engineering Systems. Science & Technique. 2016;15(4):322-328. (In Russ.) https://doi.org/10.21122/2227-1031-2016-15-4-322-328