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Single-phase power active filter using instantaneous reactive power theory - theoretical approach

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with the new method of analysis, synthesis and experimentation of single-phase power active filters. By using a new particular transformation theory, the ordinary single-phase system can be transformed into an equivalent two-axes orthogonal one. The new original thought is based on the idea that ordinary single-phase quantity can be complemented by fictitious second phase so that both of them will create an orthogonal system, as is usual in three-phase systems, in spite of [1]. Application of the above theory makes it possible to use complex methods of analysis as the instantaneous reactive power method, which have not been usable for single-phase systems so far. Both, the active and reactive powers can be determined by this way. Practical application of the method is outlined for the case of reference current determination for single-phase power active filter. The paper shows some examples of the simulation verification results, which proved a high accuracy and extremely fast response of the single-phase active filter with control, based on the introduced method. The effectiveness of proposed control algorithm is also demonstrated by experimental results, which were carried out on the single - phase active parallel filter, power rate of 25 kVA and controlled by 32 - bit floating point digital signal processor TMS 320C31.
Rocznik
Strony
7--16
Opis fizyczny
Bibliogr. 7 poz., rys., wykr.
Twórcy
autor
  • Department of Power Electrical Systemsl Systems, University of Zilina
autor
  • Department of Power Electrical Systemsl Systems, University of Zilina
autor
  • Department of Power Electrical Systemsl Systems, University of Zilina
autor
  • Faculty of Electrical Engineering, University Dresden
Bibliografia
  • [1] AKAGI H., KANAZAWA Y., NABAE A.: Generalized theory of the instantaneous reactive power in three-phase circuits. Proc. of IPEC,83 Conf., Tokio (JP), Sept. 1983, pp. 1375-1386
  • [2] AKAGI H., KANAZAWA Y., NABAE A.. Instantaneous Reactive Power Compensators Comprising Switching Devices without Energy Storage Components, IEEE Trans. on IA, Vol. 20, 1984, No. 3, pp. 625-630
  • [3] DOBRUCKY B.. Analysis and Modeliing oJ Power Semiconductor Converter in Steady- and Transient States, (in Slovak), Ph.D. Thesis, University of Zilina (S.R.), July 1985
  • [4] MACHMOUM M., BRUYANT N., SIALA S., Le DOEUFF R.: A practical approach to harmonie current compensafian by a single-phase active fil ter. Proc. ofEPE'95 Conf., Sevilla (ES), Sept. 1995, pp. 2.505-2.51 l
  • [5] DOBRUCKY B., POKORNY M., RACEK V., HA VRILA R.. A New Method of the Instantaneous Reactive Power Determination for Single-Phase Power Electronic Systems, EPE'99 Conference, Lausanne (CH), Sept. 1999
  • [6] HOLCEK R.. Implementation of ADSP21062 Floating Point Processar for the Power Active Filter Control, EE 2000 Student Scientific Conference, Technical University Ostrava (CZ), June 2000
  • [7] RACEK V. et al. Higher Harmonics Elimination and Power Factor Compensation in 25 kV/50 Hz Traction Power Supply Network (in Slovak), Research report No. EU 725/00, University o f Trencin (SK), Sept. 2000
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOB-0006-0096
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