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Power electronics controlled current source based on a multi-converter topology

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Treść / Zawartość
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Warianty tytułu
Konferencja
Computer Applications in Electrical Engineering (18-19.04.2016 ; Poznań, Polska)
Języki publikacji
EN
Abstrakty
EN
The paper presents the idea of power electronics voltage controlled current source (VCCS) which is able much more precise mapping of its output current in a reference signal, compared to a typical converter solution. It can be achieved by means of such interconnection of two separate converters that one of them corrects a total output current towards a reference signal. An output power of auxiliary converter is much lower than an output power of main one but its frequency response is extended. Thanks to continuous work of this converter also pulse modulation components in a total output current are minimized. In the paper an exemplary application of a current source, as an execution block of active power filter (APF), is presented.
Rocznik
Tom
Strony
389--396
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
autor
  • Poznan University of Technology
Bibliografia
  • [1] Vásárhelyi J., Imecs M., Szabó C., Incze I.I., Tihamér Á., Managing Transients Generated by the Reconfiguration Process at the Tandem Inverter Fed Induction Motor, Proceedings of IEEE 7th International Conference on Intelligent Engineering Systems, 2003, pp. 388-393.
  • [2] Kaneko K., Mitsuta J., Matsuse K., Sasagawa K., Abe Y., Huang L., Analysis of Dynamic Variation on a Combined Control Strategy for a Five-Level Double Converter, Proceedings of Power Electronics Specialists Conference PESC '05, 2005, pp. 885-891.
  • [3] Imecs M., Trzynadlowski A.M., Incze I.I., Szabo C., Vector Control Schemes for Tandem-Converter Fed Induction Motor Drives, IEEE TRANSACTIONS ON POWER ELECTRONICS, VOL. 20, NO. 2, 2005, pp. 493-501.
  • [4] Gwóźdź M., Effectiveness of increasing a power grid current by means of a power electronics active compensator, (in Polish), Przegląd Elektrotechniczny, Nr 7-8, 2006, pp. 65-68.
  • [5] Rui X., Jing L., Fuzhong L., Zhi W., The Application on Active Noise Cancellation - Research on the Series-Parallel Compensated UPS Converter, International Symposium on Electromagnetic Compatibility EMC 2007, pp. 138-141.
  • [6] Asiminoaei L., Aeloiza E., Enjeti P.N., Blaabjerg F., Shunt Active-Power-Filter Topology Based on Parallel Interleaved Inverters, IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, Vol. 55, No. 3, 2008, pp. 1175-1189.
  • [7] Eirea G., Sanders S., Phase current unbalance estimation in multiphase buck converters, IEEE Transactions on Power Electronics, Vol. 23, 2008, pp. 137-143.
  • [8] Wróbel M.P., Szymborska-Kajanek A., Wystrychowski G., Biniszkiewicz T., Sieroń-Stołtny K., Sieroń A., Pierzchała K., Grzeszczak W., Strojek K., Impact of low frequency pulsed magnetic fields on pain intensity, quality of life and sleep disturbances in patients with painful diabetic polyneuropathy, Diabetes & Metabolism, Vol. 34, Issue 4, Part 1, 2008, pp. 349-354.
  • [9] Hirakawa M., Nagano M., Watanabe Y., Ando K., Nakatomi S., Hashino S., Shimizu T., High power density interleaved dc/dc converter using a 3-phase integrated close-coupled inductor set aimed for electric vehicles, Proceedings of Energy Conversion Congress and Exposition (ECCE), 2010 IEEE, pp. 2451-2457.
  • [10] Morizane T., Kimura N., Circulating current control of double converter system for wind power generation, Proceedings of the 14th European Conference on Power Electronics and Applications (EPE 2011), pp. 1-10.
  • [11] Tomaszuk A., Krupa A., High efficiency high step-up DC/DC converters – a review, BULLETIN OF THE POLISH ACADEMY OF SCIENCES, TECHNICAL SCIENCES, Vol. 59, No. 4, 2011, pp. 475-483.
  • [12] Iwaszkiewicz J., Bogusławski P., Krahel A., Łowiec E., Three-phase voltage outages compensator with cascaded multilevel converter, Archives of Electrical Engineering, Vol. 61(3), 2012, pp. 325-336.
  • [13] Gwóźdź M., Power electronics wideband controlled voltage and current sources on base of interleaved converters, (in Polish), Przegląd Elektrotechniczny, Nr 10A, 2012, 132-134.
  • [14] Gwóźdź M., Power Electronics Active Shunt Filter with Controlled Dynamics, Proceedings of COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, Vol. 32, No. 4, 2013, 1337-1344.
  • [15] Sozański K., Digital Signal Processing in Power Electronics Control Circuits, Springer-Verlag, London, ISBN 978-1-4471-5266-5, 2013.
  • [16] Krystkowiak M., Current modulator implemented in modified wideband controlled current source, (in Polish), Przegląd Elektrotechniczny, Nr 6, 87-90, (2014).
  • [17] Product WEB page of MITSUBISHI ELECTRIC: http://www.mitsubishielectric.com/semiconductors/products/powermod/intelligentpmod/index.html. Accessed: 11.2014.
  • [18] Product WEB page of INFINEON: https://www.infineon.com/cms/en/product/power/mosfet/power-mosfet/n-channel-coolmos-tm-800v-900v/channel.html?channel=db3a304344921d300144ac590b4c7c63. Accessed: 11.2014.
  • [19] Product WEB page of CREE: http://www.cree.com/Power/Landing-pages/MOSFET-products. Accessed: 11.2014.
  • [20] Product WEB page of GaN Systems: http://www.gansystems.com/trans-temp.php Accessed: 12.2015.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e1ee57cc-421a-4703-aea3-1c667d10d720
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