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Konferencja
Konferencja “Integrated Optics – Sensor, Sensing and Methods” (IOS 2011) Szczyrk, luty 2011
Języki publikacji
Abstrakty
The paper presents the power conditioning system (PCS) with a five-level cascaded H-bridge converter and supercapacitor energy storage. The paper focuses on such properties of a power electronic converter as its operation, power losses, start-up as well as the DC-link voltage balancing method and controller. A laboratory model of the PCS and its test results have been presented.
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Tom
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525--540
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
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autor
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- Department of Power Electronics, Electrical Drives and Robotics, Faculty of Electrical Engineering, Silesian University of Technology, 2 Bolesława Krzywoustego St., 44-100 Gliwice, Poland, marcin.zygmanowski@polsl.pl
Bibliografia
- [1] R. Strzelecki and G. Benysek, Power Electronics in Smart Electrical Energy Networks, Springer, London, 2008.
- [2] B. Wu, High Power Converters and AC Drives, Wiley-Interscience, London, 2006.
- [3] T. Biskup, C. Buhrer, B. Grzesik, J. Krijgsman, J. Michalak, S. Pasko, and M. Zygmanowski, “Multilevel converter for power conditioning system with SMES”, Electrotechnical Review 6, 609–614 (2004).
- [4] D. Casadei, G. Grandi, U. Reggiani, and C. Rossi, “Power quality and reliability supply improvement using a power conditioning system with energy storage capability”, IEEE Int. Symposium on Indust. Electronics, IEEE-ISIE 1, CD-ROM (2004).
- [5] S. Piróg, Energy Stores, SENE, Łódź, 2007, (in Polish).
- [6] J. Rodriguez, J.S. Lai, F.Z. Peng, “Multilevel inverters: a survey of topologies, controls, and applications”, IEEE Trans. on Industrial Electronics 49 (4), 724–738 (2002).
- [7] M. Zygmanowski, B. Grzesik, and J. Michalak, The Meter Circuit and Modulators of the Energy Conditioner with the 5-level Cascade Converter Q. Electrical Engineering, University of Technology Publishing House, Gliwice, 2009, (in Polish).
- [8] M. Zygmanowski, “Comparative analysis of properties of chosen multilevel converters destinated to systems conditioning electrical energy”, PhD Thesis, University of Technology Publishing House, Gliwice, Poland, 2009.
- [9] G. Holmes, T.A. Lipo, Pulse Width Modulation for Power Converters: Principles and Practice, Wiley-IEEE Press, London, 2003.
- [10] Semikron International, Application Manual Power Modules, Semikron Publishing House, Nuremberg, 2011.
- [11] Semikron International, Datasheet of IGBT Module SKM75GB063D, Semikron Publishing House, Nuremberg, 2011.
- [12] F. Blaabjerg, J.K. Pedersen, S. Sigurjónsson, and A. Elkjaer, “An extended model of power losses in hard-switched IGBTinverter”, Industry Applications Conf. IAS 1, CD-ROM (1996).
- [13] C. Sim˜ao, N. Sadowski, N.J. Batistela, and J.P.A. Bastos, “Analysis of magnetic hysteresis loops under sinusoidal and PWM voltage waveforms”, IEEE 36th Power Electronics Specialists Conf. PESC ’05, CD-ROM (2005).
- [14] J. Klein, Synchronous Buck MOSFET Loss Calculations with Excel Model, Fairchild Application Note 6005, Semikron Publishing House, Nuremberg, 2006.
- [15] Micrometals, Inductor Design Software, Infantron, Singapore, 2009.
- [16] M. Zygmanowski, B. Grzesik, and J. Michalak, “Power conditioning system with cascaded H-bridge multilevel converter – DC-link voltage balancing method”, Conf. on Power Electronics and Adjustable Speed Drives EPE 1, CD-ROM (2011).
- [17] M. Liserre, “Passivity-based control of single-phase multilevel grid connected active rectifiers”, Bull. Pol. Ac.: Tech. 54 (3), 341–346 (2006).
- [18] I. Trintis, S. Munk-Nielsen, and R. Teodorescu, “Cascaded H-bridge with bidirectional boost converters for energy storage”, Conf. on Power Electronics and Adjustable Speed Drives EPE 1, CD-ROM (2011).
- [19] P. Cortes, F. Quiroz, and J. Rodriguez, “Predictive control of a grid-connected cascaded h-bridge multilevel converter”, Conf. on Power Electronics and Adjustable Speed Drives EPE 1, CD-ROM (2011).
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Bibliografia
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bwmeta1.element.baztech-article-BPG8-0070-0044