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Possible shunt compensation strategies based on Conservative Power Theory

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Możliwe strategie bocznikowej kompensacji bazującej na teorii CPT
Języki publikacji
EN
Abstrakty
EN
Considering the Conservative Power Theory (CPT), this paper proposes some novel compensation strategies for shunt passive or active devices. The CPT current decompositions result in several current terms (associated with specific physical phenomena), which were used for the definition of different selective current compensators, in terms of minimizing particular disturbing effects. Simulation results have been demonstrated in order to validate the possibilities and performance of the proposed strategies for single and three-phase four wired circuits.
PL
W artykule zaproponowano kilka nowych metod kompensacji, opartych na Zachowawczej Teorii Mocy (CPT), pasywnymi i aktywnymi kompensatorami, włączonymi równolegle do odbiornika. Oparty na CPT rozkład prądu ujawnia szereg składowych (stowarzyszonych ze zjawiskami fizycznymi), które mogą być użyte do selektywnego określenia prądu kompensatora. Metody te i ich skuteczność zostały potwierdzone wynikami modelowania obwodów jednofazowych oraz obwodów trójfazowych, czteroprzewodowych.
Rocznik
Strony
34--39
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
  • School of Electrical and Computer Engineering, Department of Electrical Energy Systems, University of Campinas, Unicamp/FEEC/DSEE, Av. Albert Einstein, 400, 13083-852 Campinas, SP Brazil, hmorales@dsee.fee.unicamp.br
Bibliografia
  • [1] H Akagi and A. Nabae, "Control Strategy of Active Power Filters Using Multiple Voltage Source PWM Converters", IEEE Trans. on Industrial Application, 22 (1986), No. 3, 460-465
  • [2] H. Akagi, “Control strategy and site selection of a shunt active filter for damping of harmonic propagation in power distribution systems,” IEEE Trans. Power Delivery, 12 (1997), 354–363
  • [3] F. Z. Peng, H. Akagi, and A. Nabae, "A New Approach to harmonic Compensation in Power Systems - A Combined system of shunt passive and series active filters", IEEE Trans. on Industry Applications, 26 (1990), No. 6, 983-990
  • [4] M. Aredes, J. Häfner and K. Heumann, “Three-Phase Four- Wire Shunt Active Filter Control Strategies”, IEEE Trans. on Power Electronics, 12 (1997), No. 2, 311-318
  • [5] F. P. Marafão, S. M. Deckmann, J. A. Pomilio and R. Q. Machado, “Selective Disturbing Compensation and Comparisons of Active Filtering Strategies”, Proc. of the IEEE International Conference on Harmonics and Quality of Power, (2002), 484-489
  • [6] A. Cavallini and G. C. Montanari, “Compensation Strategies for Shunt Active-Filter Control”, IEEE Trans. on Power Electronics, 9 (1994), No. 6, 587-593
  • [7] P. Tenti and P. Mattavelli, “A Time-Domain Approach to Power Term Definitions under Non-sinusoidal Conditions”, Proc. of the International Workshop on Power Definitions and Measurements under Non-Sinusoidal Conditions, (2003), 1-10
  • [8] E. Tedeschi and P. Tenti, “Cooperative Design and Control of Distributed Harmonic and Reactive Compensators”, Proc. of the International School on Nonsinusoidal Currents and Compensation, (2008), 1-6
  • [9] E. Tedeschi, P. Tenti, P. Mattavelli and D, Trombetti, “Cooperative control of electronic power processors in microgrids,” Proc. of the Brazilian Power Electronics Conference, Brazil, (2009), 1-8
  • [10] P. Tenti, P. Mattavelli and H. K. M. Paredes, “Conservative Power Theory, Sequence Components and Accountability in Smart Grids”, Przeglad Elektrotechniczny, (2010), nr. 6, 30-37
  • [11] H. K. M. Paredes, F. P. Marafão, T. M. Terrazas and P. J. A. Serni, “Harmonic, Reactive and Unbalance Compensation by Means of CPT Framework”, Proc. of the Brazilian Power Electronics Conference, (2009), 741-748
  • [12] T. E. N. Zuniga and J. A. Pomilio: “Shunt Active Power Filter Synthesizing Resistive Load”. IEEE Trans. on Power Electronics, 17 (2002), No. 2, 273-278
  • [13] P. Mattavelli and P. Tenti, “High Performance Active Filters using Selective Harmonic Control”, Proc. of the IEEE Power Engineering Society Summer Meeting, (2002), 977-982
  • [14] P. Mattavelli and F.P. Marafão, “Repetitive-Based Control for Selective Harmonic Compensation in Active Power Filters”, IEEE Trans. on Industrial Electronics, 51 (2004), No. 05, 1018-1024
  • [15] F. Z. Peng, "Application Issues of Active Power Filters" IEEE Industry Applications Magazine, 4 (1998), No. 5, 21-30
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW8-0016-0040
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