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2009 | Vol. 58, nr 3-4 | 143-156
Tytuł artykułu

Energy storage interfaces with Z-source based inverters

Autorzy
Warianty tytułu
PL
Układy sprzęgające magazyny energii z wykorzystaniem falowników typu Z
Języki publikacji
EN
Abstrakty
EN
The paper presents an overview of Z-source based inverters suitable in the energy storage area. Key features of standard and bidirectional Z-source inverters are described and laboratory model of energy storage/grid interface is shown. Author discusses also various ideas of the energy source and storage connection within Z-network. Finally recent ideas such as quasi Z-source and improved Z-source inverters are presented.
PL
Artykuł przedstawia przegląd falowników typu Z przeznaczonych do zastosowań w zakresie magazynowania energii. Opisano kluczowe właściwości standardowej i dwukierunkowej wersji falownika typu Z oraz przedstawiono model laboratoryjny tego układu sprzęgającego magazyn energii z siecią zasilającą. Autor dyskutuje także różne warianty połączenia źródeł i magazynów energii w obwodzie Z. Przedstawione są również ostatnie koncepcje takie jak falowniki quasi-Z oraz ulepszony Z.
Wydawca

Rocznik
Strony
143-156
Opis fizyczny
Bibliogr. 29 poz., rys., tab.
Twórcy
Bibliografia
  • 1. Peng F. Z.: Z-source inverter. IEEE Trans. On Industry Applications. Vol. 39, March-April 2003, pp. 504-510.
  • 2. Peng F. Z.: Z-source networks for power conversion. Twenty-Third Annual IEEE Applied Power Electronics Conference 2008. APEC 2008, 24-28 Feb. 2008 pp. 1258-1265.
  • 3. Xie Y., Qian Z., Ding X., Peng F. Z.: A Novel Buck-Boost Z-Source Rectifier. IEEE Power Electronics Specialist Conference PESC'06 Proceedings. 18-22 June 2006, Digital Object Identifier 10.1109/PESC.2006.1711940.
  • 4. Ding X., Qian Z., Yang S., Cui B., Peng F. Z.: A High-Performance Z-Source Inverter Operating with Small Inductor at Wide-Range Load. Twenty Second Annual IEEE Applied Power Electronics Conference APEC 2007, pp. 615-620.
  • 5. Rabkowski J.: The bidirectional Z-source inverter for energy storage application. European Conference on Power Electronics and Applications EPE 2007. Digital Object Identifier 10.1109/EPE.2O07.4417265.
  • 6. Peng F. Z., Shen M.: Operation modes and characteristics of the Z-source inverter with small inductance. Fourtieth IAS Annual Meeting Conference Record 2005, Vol. 2, 2-6 Oct. 2005, pp. 1253-1260.
  • 7. Shen M., Peng F. Z.: Operation Modes and Characteristics of the Z-Source Inverter With Small Inductance or Low Power Factor. IEEE Transactions on Industrial Electronics. Vol. 55, Iss. 1, Jan. 2008, pp. 89-96.
  • 8. Schaltz E., Oera O., Larsen L., Chen Z.: Investigations of Pseudo-Active State in Z-source Inverter. PELINCEC 2005 Conference Record. Warsaw, October 2005.
  • 9. Shen M., Peng F. Z.: Control of the Z-Source Inverter for Fuel Cell-Battery Hybrid Vehicles to Eliminate Undesirable Operation Modes. Conference Record of the 2006 IEEE Industry Applications Conference Forty-First IAS Annual Meeting. Volume 4, Oct. 2006 pp. 1667-1673.
  • 10. Peng F. Z., Shen M., Holland K.: Application of Z-Source Inverter for Traction Drive of Fuel Cell - Battery Hybrid Electric Vehicles. IEEE Transactions on Power Electronics. Vol. 22, Iss. 3, May 2007, pp. 1054-1061.
  • 11. Shen M., Hodek S., Peng F. Z.: Control of the Z-Source Inverter for FCHEV with the Battery Connected to the Motor Neutral Point. IEEE Power Electronics Specialists Conference PESC, 17-21 June 2007, pp. 1485-1490.
  • 12. Poh Chiang Loh et al: Pulse width modulation of Z-source inverters. Conf. Rec. 2004 IAS Annual Meeting. Digital Object Identifier 10.1109/IAS.2004.1348401.
  • 13. Shen M., et al.: Constant Boost Control of the Z-source Inverter to Minimize Current Ripple and Voltage Stress. IEEE Trans. On Industry Applications. Vol. 42, No. 3, May/Junel 2006, pp. 770-778.
  • 14. Peng F. Z., Shen M., Quian Z.: Maximum Boost Control of the Z-source Inverter. Power Electronic Specialists Conference PESC'04 Proceedings. Aachen 2004.
  • 15. Gao F., Loh P.C., Vilathgamuwa D.M., Blaabjerg F.: Performance Analysis of Random Pulse-Width Modulated Z-Source Inverter with Reduced Common Mode Switching. 37th IEEE Power Electronics Specialists Conference PESC '06, 18-22 June 2006, pp. 1-7.
  • 16. Tran Q.V., et al.: A modified space vector PWM for common mode voltage mitigation in diode rectifier / Z-source inverter system. 7th Internatonal Conference on Power Electronics, ICPE '07, 22-26 Oct 2007, pp. 592-597.
  • 17. Rabkowski J., Barlik R., Nowak M.: Pulse Width Modulation Methods for Bidirectional/High-Performance Z-source Inverter. Power Electronics Specialists Conference PESC. 15-19 June 2008, pp. 2750-2756.
  • 18. Shen M., et al.: Comparison of Traditional Inverters and Z -Source Inverter for Fuel Cell Vehicles. IEEE Transactions on Power Electronics. Vol. 22, Iss. 4, July 2007, pp. 1453-1463.
  • 19. Shen M., et al.: Design and Development of a 50kW Z-Source Inverter for Fuel Cell Vehicles. CES/IEEE 5th International Power Electronics and Motion Control Conference 2006 IPEMC '06, Vol. 2, 14-16 Aug. 2006, pp. 1-5.
  • 20. Haiping Xu, et al.: Analysis and design of Bi-directional Z-source inverter for electrical vehicles. Twenty-Third Annual IEEE Applied Power Electronics Conference and Exposition 2008 APEC, 24-28 Feb. 2008, pp. 1252-1257.
  • 21. Huang Y., Shen M., Peng F. Z., Wang J.: Z-source Inverter for Residential Photovoltaic Systems, IEEE Transactions on Power Electronics, Vol. 21, Iss. 6, Nov. 2006 pp. 1776-1782.
  • 22. Park Y. H., et al.: A control strategy for the grid-connected PV system using a Z-source inverter. IEEE 2nd International Power and Energy Conference, PECon 2008, 1-3 Dec., pp. 948-951.
  • 23. Vilathgamuwa D. M., et al.: Z-source converter based grid-interface for variable-speed permanent magnet wind turbine generators. IEEE Power Electronics Specialists Conference PESC 2008. 15-19 June. pp. 4545-4550.
  • 24. Peng F.Z., Qian Z.: Z-H converter. IEEE Power Electronics Specialists Conference PESC 2008, 15-19 June, pp. 1004-1007.
  • 25. Sack L., et al.: Dimensioning of the Z-source inverter for general purpose drives with three-phase standard motors. IEEE Power Electronics Specialists Conference PESC 2008. 15-19 June, pp. 1808-1813.
  • 26. Franke W.-T., Mohr M., Fuchs F. W: Comparison of a Z-source inverter and a voltage-source inverter linked with a DC/DC-boost-converter for wind turbines concerning their efficiency and installed semiconductor power. IEEE Power Electronics Specialists Conference PESC 2008. 15-19 June, pp. 1814-1820.
  • 27. Anderson J., Peng F. Z.: Four Quasi-Z-Source Inverters. IEEE, Power Electronics Specialists Conference PESC 2008, 15-19 June, pp. 2743-2749.
  • 28. Tang Y., Xie S., Zhang C., Xu Z.: Improved Z-Source Inverter with Reduced Z-Source Capacitor Voltage Stress and Soft Start Capability. IEEE Trans. On Power Electronics. Vol. 24, Iss. 2, Feb. 2009, pp. 409-4l5.
  • 29. Poh Chiang Loh, Feng Gao, Blaabjerg F.: Topological and Modulation Design of Three-Level Z-Source Inverters. IEEE Trans. On Power Electronics. Vol. 23, Iss. 5, September 2008, pp. 2268-2277.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0053-0066
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