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Active-controlled two-terminal network implementing a convolution-type immittance operator

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Języki publikacji
EN
Abstrakty
EN
Commonly known DC-AC switching converters are commonly used in compensator branches. One example of this is a static synchronous compensator (STATCOM). It consists of a voltage source converter (VSC) and acts as an inverter with a capacitor as a DC power source. These compensators use the PWM switching scheme or space vector modulation (SVM) method. Both methods require the desired signal to be generated. In some cases, as during the synthesis of self-excited systems or active energy-compensators, it is necessary to perform the desired branch immittance, e.g. negative capacitance, inductance, resistance or irrational impedance. In such cases, it is necessary to control the universal branch on the basis of a formula. This article presents the implementation method for the convolutional type impedance operators.
Słowa kluczowe
Rocznik
Strony
1107--1111
Opis fizyczny
Bibliogr. 10 poz., rys.
Twórcy
  • Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
  • Cracow University of Technology, ul. Warszawska 24, 31-155 Cracow, Poland
Bibliografia
  • [1] M. Rukonuzzaman and M. Nakaoka, “Single-phase shunt active power filter with harmonic detection”, IEEE Proc. Electr. Power Appl. 149 (5), 343–350 (2002).
  • [2] M. Palandoken, M. Aksoy, and M.Tumay, “A fuzzy-controlled single-phase active power filter operating with fixed switching frequency for reactive power and current harmonics compensation”, Electr. Eng. 86 (1), 9–16 (2003).
  • [3] C. Qiao, K. M. Smedley, and F. Maddaleno, “A single-phase active power filter with onecycle control under unipolar operation”, IEEE Trans. Circ. Syst.-I 51 (8), 1623–1630 (2004).
  • [4] M. Antchev, M. Petkova, and M. Petkov, “Single-phase shunt active power filter using frequency limitation and hysteresis current control”, in Proc of the power conversion conference, 2007, pp. 97–102.
  • [5] Y. Kobayashi and H. Funato, “Current control method based on hysteresis control suitable for single phase active filter with LC output filter”, in Proc of the EPE power electronics and motion control conference, 2008, pp. 479–484.
  • [6] P.A. Dahono, “New hysteresis current controller for single-phase full-bridge inverters”, in IET Power Electron. 2 (5), 585–594 (2009).
  • [7] M. Siwczyński and M. Jaraczewski, “New Parseval’s inactive-power factor of a two-terminal network”, Int. J. Electr. Power Energy Syst. 104, 222–229 (2019).
  • [8] K. Oprzędkiewicz, W. Mitkowski, et al., “The Caputo vs. Caputo-Fabrizio operators in modeling of heat transfer process”, Bull. Pol. Ac.: Tech. 66(4), 501–507 (2018).
  • [9] K. Oprzędkiewicz, “Non integer order, state space model of heat transfer process using Caputo-Fabrizio operator”, Bull. Pol. Ac.: Tech. 66 (3), 249–255 (2018).
  • [10] M. Siwczyński and K. Hawron, “The optimal online control of the instantaneous power and the multiphase source’s current”, Bull. Pol. Ac.: Tech. 65 (6), 827–832 (2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c3df359a-f06c-479e-884b-717ba026032c
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