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Tytuł artykułu

Application of the second order generalized integrator in digital control systems

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper describes second order generalized integrator (sogi) which is specialized in band-pass filtering and orthogonalization of periodic signals. Modifications of the structure and the influence of parameters on the system performance is described. The article highlights the particular importance of model discretization method in the practical implementation, as well as reviews estimation methods of the: amplitude, frequency, offset and phase angle of the periodic signal. Examples of simulation and experimental results are presented.
Rocznik
Strony
423--437
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
  • Faculty of Electrical Engineering, Warsaw University of Technology Koszykowa 75, 00-662 Warszawa
autor
  • Faculty of Mechanical and Aerospace Engineering, Warsaw University of Technology Koszykowa 75, 00-662 Warszawa
  • Faculty of Electrical Engineering, Warsaw University of Technology Koszykowa 75, 00-662 Warszawa
Bibliografia
  • [1] Fedele G., Ferrise A., Non Adaptive Second-Order Generalized Integrator for Identification of a Biased Sinusoidal Signal. IEEE Transactions on Automatic Control 57(7): 1838-1842 (2012).
  • [2] Wang L., Yang T., Zhang D., Lu Z., A high performance simulation methodology for multilevel grid connected inverters. Journal of Zhejiang University SCIENCE C 13(7): 544-551 (2012).
  • [3] Díaz M.J., Bueno E., Mateos R. et al., FPGA Implementation of Harmonic Detector based on Second Order Generalized Integrators. 34th Annual Conference of IEEE, Industrial Electronics, pp. 2453-2458 (2008).
  • [4] Tao H., Duarte J.L., Hendrix M.A.M., Control of Grid-Interactive Inverters as Used in Small Distributed Generators. IEEE 42nd IAS Annual Meeting Industry Applications, pp. 1574-1581 (2007).
  • [5] Sera D., Kerekes T., Lungeanu M. et al., Low-Cost Digital Implementation of Proportional-Resonant Current Controllers for PV Inverter Applications Using Delta Operator. 31st Annual Conference of IEEE Industrial Electronics Society, Nov. (2005).
  • [6] Matas J., Castilla M., de Vicuna L.G. et al., Virtual Impedance Loop for Droop-Controlled Single- Phase Parallel Inverters Using a Second-Order General-Integrator Scheme. IEEE Transactions On Power Electronics 25(12): 2993-3002 (2010).
  • [7] Teodorescu R., Blaabjerg F., Liserre M., Loh P.C., Proportional-resonant controllers and filters for grid-connected voltage-source converters. IEEE Proc. Electr. Power Appl. 153(5): 750762 (2006).
  • [8] Rodriguez P., Luna A., Etxeberria I. et al., Multiple Second Order Generalized Integrators for Harmonic Synchronization of Power Converter. IEEE Energy Conversion Congress and Exposition 9: pp. 2239-2246 (2009).
  • [9] Golestan S., Monfared M., Freijedo F.D., Design-Oriented Study of Advanced Synchronous Reference Frame Phase-Locked Loops. IEEE Transaction On Power Electronics 28(2): 765-778 (2013).
  • [10] Ciobotaru M., Teodorescu R., Blaabjerg F., A New Single-Phase PLL Structure Based on Second Order Generalized Integrator. Proc. IEEE Power Electron. Spec. Conf. (PESC’06), Jun., pp. 1-7 (2006).
  • [11] Reza S., Ciobotaru M., Agelidis V.G., Tracking of Time-Varying Grid Voltage Using DFT Based Second Order Generalized Integrator Technique. IEEE Power System Technology (POWERCON), Oct., pp. 1-6 (2012).
  • [12] Rodríguez A., Girón C., Rizo M. et al., Comparison of Current Controllers based on Repetitive- Based Control and Second Order Generalized Integrators for Active Power Filters. 35th Annual Conference of IEEE Industrial Electronics Nov., pp: 3223-3228 (2009).
  • [13] Liu C., Blaabjerg F., Chen W., Xu D., Stator Current Harmonic Control With Resonant Controller for Doubly Fed Induction Generator. IEEE Transaction on Power Electronics 27(7): 3207-3220 (2012).
  • [14] Golestan S., Monfared M., Freijedo F.D., Guerrero J.M., Design and Tuning of a Modified Power- Based PLL for Single-Phase Grid-Connected Power Conditioning Systems. IEEE Transactions on Power Electronics 27(8): 3639-3650 (2012).
  • [15] Rodríguez F.J., Bueno E., Aredes M. et al., Discrete-time Implementation of Second Order Generalized integrators for grid converters. IEEE Industrial Electronics 10-13 Nov., pp. 176-181 (2008).
  • [16] Svensson J., Synchronisation methods for grid-connected voltage source converters. IEEE Generation, Transmission and Distribution 148(3): 229-235 (2001).
  • [17] Coluccio L., Eisinberg A., Fedele G. et al., Modulating functions method plus SOGI scheme for signal tracking. IEEE Industrial Electronics. ISIE 2008, pp. 854-859 (2008).
  • [18] Texas Instruments, TMS320F28069, Piccolo Microcontrollers, SPRS698C - November 2010 - Revised May (2012).
  • [19] Texas Instruments, TMS320x2803x Piccolo Control Law Accelerator (CLA), Reference guide, SPRUGE6B May 2009 - Revised May (2010).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1080ee48-9173-4664-8233-7537486027d1
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