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Recovering the voltage dip analysis with STATCOM of DFIG in multi-machine wind farm

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Analiza spadków napięcia w wielomaszynowej farmie wiatrowej z układem STATCOM
Języki publikacji
EN
Abstrakty
EN
In this study, voltage dip analysis of the wind power plant that is connected to 6 MW Double Feed Induction Generator (DFIG) was performed. During the operation of Multi-machine wind farm that is connected to network adaptation between 10 MVAr STATCOM and system was provided. Purpose of this adaptation, 3-phase fault analysis is to be able and the elimination of problems that may occur with induction motor runstop.
PL
Zaprezentowano analizę spadku napięcia w elektrowni wiatrowej podłączonej do generatorów indukcyjnych 6 MW typu DFIG. Analizę przeprowadzono na przykładzie wielomaszynowej farmy wiatrowej podłączonej do sieci z systemem 10 MVAr STATCOM. (Analiza spadków napięcia w wielomaszynowej farmie wiatrowej z układem STATCOM)
Słowa kluczowe
Rocznik
Strony
166--171
Opis fizyczny
bibliogr. 22 poz., rys.
Twórcy
autor
autor
autor
Bibliografia
  • [1] Molinas M., Suul J.A., Undeland T., Low Voltage Ride Through of Wind Farms With Cage Generators: STATCOM Versus SVC, IEEE Transactions on Power Electronics, 23 (2008), No. 3, 1104-1117
  • [2] Qiau W., Venayagamoorthy G. K., Harley R. G., Real-Time Implementation of a STATCOM on a Wind Farm Equipped with Double Feed Induction Generators, IEEE Transaction on Industry Applications, 45 (2009), No.1, 98-107
  • [3] Hossain M. J., Pota H.R., Ugrinovskii V.A., Ramos R.A., Simultaneous STATCOM and Pitch Angle Control for Improved LVRT Capability of Fixed-Speed Wind Turbines, IEEE Transactions on Sustainable Energy, 1 (2010), No. 3, 142-151
  • [4] Chong H., Huang A.Q., Baran M.E., Bhattacharya S., Litzenberger W., Anderson L., Johnson A.L., Edris, A.-A., STATCOM Impact Study on the Integration of a Large Wind Farm into a Weak Loop Power System, IEEE Transactions on Conversion 23 (2008), No. 1, 226-233
  • [5] Arulampalam A., Barnes M., Jenkins N., Ekanayake J.B., Power Quality and Stability Improvement of a Wind Farm Using STATCOM Supported With Hybrid Battery Energy Storage, IEE Proc. Gener. Trans. Distrib., 153 (2006), No. 6, 701-710
  • [6] Saad-Saoud Z., Lisboa M.L., Ekanayake J.B., Jenkins N., Strbac G., Application of STATCOMs to Wind Farms, IEE Proc. Gener. Trans. Distrib., 145 (1998) No. 5, 511-516
  • [7] Hossain M.J., Pota H.R., Romas R.A., Robust STATCOM Control for The Stabilisation of Fixed-Speed Wind Turbines During Low Voltage, 2011 Elsevier Ltd. Renewable Energy 36 (2011) 2897-2905
  • [8] Qiao W., Harley R., Venayagamoorthy G., Coordinated Reactive Power Control of A Large Wind Farm And a STATCOM Using Heuristic Dynamic Programming, 24 (2009), No. 2, 493-503
  • [9] Wang L., Huang W., Dynamic-Stability Enhancement And Reactive Power/Voltage Control of A Large-Scale Wind Farm Using A STATCOM, NAPS 2010, 26-28 Sept. 2010, 1-8
  • [10] Tofigh M.A., Rahim N.A., Kumaran R.V., Voltage Regulation of Grid Connected Wind Farm Using STATCOM, APEEC 2010 Asia-Pacific, 28-31 March 2010, 1-4
  • [11] Tian G., Wang S., Liu G., Power Quality and Transient Stability Improvement of Wind Farm with Fixed-Speed Induction Generators Using a STATCOM, IEEE International Conference on Power System Technology, 2010,1-6
  • [12] Ozturk A., Dosoglu K., Investigation of The Control Voltage and Reactive Power in Wind Farm Load Bus by STATCOM and SVC, Sci. Res. Essays, 5 (2010), No. 15, 1993-2003
  • [13] El-Moursi M.S., Bak-Jensen B., Abdel-Rahman M.H., Novel STATCOM Controller for Mitigating SSR and Damping Power System Oscillations in a Series Compensated Wind Park, IEEE Transactions on Power Electronics, 25 (2010), No. 2, 429-441
  • [14] Bozhko S., Blasko-Gimenez R., Li R., Clare J.C., Asher G.M., Control of Offshore DFIG-based Wind Farm Grid with Line- Commutated HVDC Connection, EPEPEMC 2006, 22 (2006), No. 1, 1563-1568
  • [15] Jayam A.P., Ardeshna N.K., Chowdhury B.H., Application of STATCOM For Improved Reliability of Power Grid Containing A Wind Turbine, IEEE PES 2008, 20-24 July 2008, 1-7
  • [16] Slootweg J.G., Polinder H., King W.L., Dynamic Modelingof A Wind Turbine With A Doubly Fed Induction Generator, IEEE Power Eng. Soc. Meet, 1 (2001), 644-649
  • [17] Kumar N. S., Gokulakrishnan J., Impact of FACTS Controller on The Stability of Power Systems Connected with Double Feed Induction Generators, 2011 Elsevier Ltd. Electrical Power and Energy Systems, 33 (2011), 1172-1184
  • [18] Hingorani N.G., Gyugyi L., Understanding FACTS. Delhi, Standard Publishers Distributors, 2001
  • [19] Chatterjee D., Ghosh A., Improvement of Transient Stability of Power Systems With STATCOM Controller Using Trajectory Sensitivity, International Journal of Electrical Power Energy Systems, 33 (2011), No. 3, 531-539
  • [20] Canizares A.C., Pozzi M., Corsi S., Uzunovic E., STATCOM Modeling For Voltage and Angle Stability Studies, 2003 Elsevier Ltd. Electrical Power and Energy Systems, 25 (2003), 431-441
  • [21] Gallo D., Landi C., Luiso M., Severity Assessment Issues For Short Voltage Dips, 2010 Elsevier Ltd. Measurement, 43 (2010), 1040-1048
  • [22] Leiria A., Nunes P., Morched A., Barros M.C.T., Induction Motor Response to Voltage Dips, 2006 Elsevier Electric Power Systems Research, 76 (2006), 676-680
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0025-0053
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