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Tytuł artykułu

Design and Analysis of the Droop-Controlled Parallel Four-leg Inverters to Share Unbalanced and Nonlinear Loads

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Projekt i analiza poczwórnego przekształtnika ze sterowanymi spadkami stosowanego do pracy w warunkach niezrównoważonych i nieliniowych obciążeń
Języki publikacji
EN
Abstrakty
EN
In this paper, the performance of wireless operation of four-leg parallel inverters, at the presence of unbalanced nonlinear loads, is investigated. In order to control the parallel inverters, an inner current and external voltage control loops should be designed. In this paper, a proportional controller for the current internal loop as well as a proportional-resonant one for the voltage external loop are investigated and designed to ensure the proper performance of the system at the presence of unbalanced and nonlinear loads. In this paper, droop control and virtual output impedance loops have formed the power sharing control system for the parallel inverters. The proposed system is able to feed balanced, unbalanced, and nonlinear loads and provides an appropriate sinusoidal voltage waveform for loads by accurately sharing power between the parallel inverters. Simulation results verify the accurate and proper performance of the proposed system.
PL
Zaprezentowano właściwości bezprzewodowej pracy przekształtnika w obecności niezrównoważonego, nieliniowego obciążenia. Sterowaniu podlegają wewnętrzna pętla prądowa jak i zewnętrzna pętla napięciowa. System sterowania kontroluje spadki napięcia oraz zewnętrzną impedancję.
Rocznik
Strony
105--110
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • Department of Electrical and Computer Engineering, Tarbiat Modares University, Jalal Ale Ahmad Highway, P.O.Box: 14115-111, Tehran, Iran
  • Department of Electrical and Computer Engineering, Tarbiat Modares University, Jalal Ale Ahmad Highway, P.O.Box: 14115- 111, Tehran, Iran
  • Department of Electrical and Computer Engineering, Tarbiat Modares University, Jalal Ale Ahmad Highway, P.O.Box: 14115-111, Tehran, Iran
Bibliografia
  • 1. Eyyup Demirkutlu, Suileyman Qetinkaya, Ahmet M. Hava, Output Voltage Control of A Four-Leg Inverter Based Three-Phase UPS by Means of Stationary Frame Resonant Filter Banks, European Conference on Power Electronics and Applications, (2007), 1-10.
  • 2. Comparison Transformerless to Transformer-based UPS Design, EMERSON Network Power.
  • 3. Jun Liang, Tim C. Green, Chunmei Feng, George Weiss, Increasing Voltage Utilization in Split-Link, Four-Wire Inverters, IEEE Trans. Ind. Electron., 24(2009), no. 6, 1526-1569.
  • 4. J. De Kooning, B. Meersman, T. Vandoorn, B. Renders, L. Vandevelde, Comparison of Three-Phase Four-Wire Converters for Distributed Generation, 45th International Universities Power Engineering Conference (UPEC), (2010), 1-6.
  • 5. Josep M. Guerrero, Lijun Hang, Javier Uceda, Control of Distributed Uninterruptible Power Supply Systems, IEEE Transactions on Industrial Electronics, 55(2008) , no. 8, 2845–2859.
  • 6. M. Illindala and G. Venkataramanan, Control of distributed generation systems to mitigate load and line imbalances, Proc. 33rd Annu. IEEE PESC, (2002), 2013–2018.
  • 7. P. Hsu and M. Behnke, A three-phase synchronous frame controller for unbalanced load, Proc. 29th Annu. IEEE PESC, (1998), 1369–1374.
  • 8. Y. Li, D. M. Vilathgamuwa, and L. P. Chiang, Microgrid power quality enhancement using a three-phase four-wire grid-interfacing compensator, IEEE Trans. Ind. Appl., 41(2005), no. 6, 1707–1719.
  • 9. H. S. Song and K. H. Nam, Dual current control scheme for PWM converter under unbalanced input voltage conditions, IEEE Trans. Ind. Electron., 46, (1999), no. 5, 953–959, 1999.
  • 10. W. C. Lee, T. K. Lee, and D. S. Hyun, A three-phase parallel active power filter operating with PCC voltage compensation with consideration for an unbalanced load, IEEE Trans. Power Electron., 17(2002), no. 5, 807–814.
  • 11. Tzung-Lin Lee, Po-Tai Cheng, Design of a New Cooperative Harmonic Filtering Strategy for Distributed Generation Interface Converters in an Islanding Network, IEEE Trans. Power Electronics., 22(2007), no. 5, 1919-1927.
  • 12. Po-Tai Cheng, Chien-An Chen, Tzung-Lin Lee, Shen-Yuan Kuo, A Cooperative Imbalance Compensation Method for Distributed-Generation Interface Converters, IEEE Trans. Ind. App., 45(2009), no. 2, 805-815.
  • 13. S.M. Dehghan, A. Ale Ahmad, R. Lourakzadegan, M. Fazeli, M. Mohamadian, A. Abrishamifar, A High Performance Controller for Parallel Operation of three-Phase UPSs Powering Unbalanced and Nonlinear Loads, Power Electronics, Drive Systems and Technologies Conference, (2011) 433 – 438.
  • 14. Dipankar De and Venkataramanan Ramanarayanan, Decentralized Parallel Operation of Inverters Sharing Unbalanced and Nonlinear Loads, IEEE Transactions on Power Electronics, 25(2010), no. 12, 3015-3025.
  • 15. Dipankar De and Venkataramanan Ramanarayanan, A Proportional + Multiresonant Controller for Three-Phase Four-Wire High-Frequency Link Inverter, IEEE Transactions on Power Electronics, 25(2010), no. 4, 899-906.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-42806630-655c-4b58-b33d-2f42eda8df36
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