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Analysis and simulation of the basic structures of active EMI filters

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The main goals of this paper are an analysis and a simulation of selected basic structures of active EMI filters. The first part contains a presentation of selected structures of active filters, along with categorization by their properties in the field of detection and compensation of EMI noise and by the kind of feedback. Each structure's description is accompanied by an analytical discussion of their properties such as insertion loss (IL) and the impedance increase (ΔZ>sub>n). The second part contains results of simulations of the presented structures, with the aim being a comparison of their characteristics and determining proper operation conditions.
Rocznik
Tom
Strony
88--101
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
  • Silesian University of Technology 44-100 Gliwice, ul. Akademicka 10
autor
  • Silesian University of Technology 44-100 Gliwice, ul. Akademicka 10
Bibliografia
  • [1] Akagi H., Shimizu T.: Attenuation of Conducted EMI Emissions From an Inverter-Driven Motor. IEEE Trans. Power Electron., vol. 23, no. 1, Jan. 2008.
  • [2] Biela J., Wirthmueller A., Waespe R., Heldwein M. L., Raggl K., Kolar J. W.: Passive and Active Hybrid Integrated EMI Filters. IEEE Trans. Power Electron., vol. 24, no. 5, May 2009.
  • [3] Boroyevich D., Burgos R., Arnedo L. Wang F.: Synthesis and integration of future electronic power distribution systems. Proc. IEEE PCC, Nagoya, JP, 2007.
  • [4] Boroyevich D., Zhang X., Bishinoi H., Burgos R., Mattavelli P., Wang F.: Conducted EMI and Systems Integration. CIPS 2014, Feb., 25-27 2014, Nuremberg/Germany.
  • [5] Cantillon-Murphy P., Neugebauer T. C., Brasca C., Perreault D. J.: An Active Ripple Filtering for Improving Common-Mode Inductor Performance. IEEE Power Electron. Letters, vol. 2, no. 2, pp.45-50, June 2004.
  • [6] Chen W., Yang X., Wang Z.: An Active EMI Filtering Technique for Improving Passive Filter Low-Frequency Performance. IEEE Trans. Electromagn. Compat., vol. 48, no. 1, Feb. 2006.
  • [7] Dong D., Luo F., Zhang D. Boroyevich D., Mattavelli P.: Grid-interface bidirectional converter for residental dc distributions systems - Part 2: AC and dc interface design with passive components minimization. IEEE Trans. Power Electron., vol. 28, no. 4, pp. 1667-1679, Apr. 2013.
  • [8] Gerber M., Ferreira J. A.: A system integration philosophy for demanding requirements in power electronics. Proc. IEEE IAS, pp. 1389-1396, Sep. 2007.
  • [9] Heldwein M. L., Ertl H., Biela J., Kolar J. W.: Implementation of a Transformless Common-Mode Active Filter for Offline Converter Systems. IEEE Trans. On Industrial Electron., vol. 57, no. 5, May 2010.
  • [10] LaWhite L., Schlecht M. F.: Active filters for high frequency power circuits under strict ripple limitations. IEEE PESC Rec., pp. 255, 1986.
  • [11] LaWhite L., Schlecht M. F.: Design of Active Ripple Filters for Power Circuits Operating in the 1-10 MHz Range. IEEE Trans. Power Electron., vol. 3, no. 3, pp. 310-317, July 1988.
  • [12] Luo F., Zhang D. Boroyevich D., Mattavelli P., Xue J., Wang F., Gazel N.: On discussion of ac and dc side EMI filters design for conducted noise suppression in dc-feed three-phase motor drive system. Proc. IEEE APEC, Mar. 2011.
  • [13] Pasko M., Szymczak M.: Porównanie i ocena metod aktywnego tłumienia zaburzeń przewodzonych. IAPGOŚ, vol. 4, no. 4, 2014.
  • [14] Son Y.-C., Sul S.-K.: Generalization of Active Filters for EMI Reduction and Harmonics Compensation. IEEE Trans. Ind. Appl., vol. 42, no. 2, pp. 545-551, March/April 2006.
  • [15] Zhang X., Boroyevich D., Mattavelli P., Wang F.: Filter Design Oriented EMI Prediction Model for DC-field Motor Drive System Using Double Fourier Integral Transform Method. Proc. IEEE IPEMC, pp. 1060-1064, 2012.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f3ce734e-433e-4306-b101-727c778bc1fa
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