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Improving the performance of wind turbine equipped with DFIG using STATCOM based on input-output feedback linearization controller | ||
Energy Equipment and Systems | ||
مقاله 7، دوره 4، شماره 1، شهریور 2016، صفحه 65-79 اصل مقاله (1.52 M) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22059/ees.2016.57638 | ||
نویسندگان | ||
Ghazanfar Shahgholian* ؛ Noushaz Izadpanahi | ||
Islamic Azad University, Isfahan, Iran | ||
چکیده | ||
Using the FACTS controllers, such as static synchronous compensator (STATCOM), as it provides continuous reactive power, in the grid including wind turbine (WT) equipped with doubly fed induction generator, for improving voltage profile (under normal circumstances) and providing a transition ability from inductor generator transition state has been proposed. In this paper, in order to control the controllers and explained goals, nonlinear controller, as a substitute for the traditional controller, is presented. Replacing STATCOM controller in wind farm, which is equipped with doubly fed induction generator (DFIG) using input-output feedback linearization controller, the needed reactive power in order to stable wind farm equipped with DFIG is considered when error is occurred. The proposed control method has been simulated for IEEE-9 Bus, bus No 5, and the achievability to the desired targets in STATCOM efficiency for its reactive power has been investigated. The reasons of using these controllers in bus 5 are voltage dropping and reducing reactive power in this bus. It can be seen by compensating for voltage and reactive power in this bus that these two parameters have improved in other buses. The results show that with the proposed controller, STATCOM has done its duty well and the network bus voltage and reactive power to sustain the wind farm equipped with DFIG in transient mode is provided. | ||
کلیدواژهها | ||
Doubly Fed Induction Generator؛ Static Synchronous Compensator؛ Transition State؛ wind farm؛ Input-Output Feedback Linearization Controller | ||
مراجع | ||
[1]Shang L., Hu J., Sliding-Mode-Based Direct Power Control of Grid-Connected Wind -Turbine-Driven Doubly Fed Induction Generators Under Unbalanced Grid Voltage Conditions, IEEE Trans. on Energy Conversion (2012) 27: 362–373.
[2]Fooladgar M., Rok-Rok E., Fani B., Shahgholian Gh., Evaluation of the Trajectory Sensitivity Analysis of the DFIG Control Parameters in Response to Changes in Wind Speed and the Line Impedance Connection to the Grid DFIG, Journal of Intelligent Procedures in Electrical Technology (2015) 5: 37-54.
[3]Mahdavian M., Wattanapongsakorn N., Shahgholian Gh., Mozafarpoor S.H., Janghorbani M., Shariatmadar S.M., Maximum Power Point Tracking in Wind Energy Conversion Systems Using Tracking Control System Based on Fuzzy Controller, IEEE/ECTICON (2014) May, 1-5.
[4]Baroudi J.A., Dinavahi V., Knight A.M., A Review of Power Converter Topologies for Wind Generators, IEEE/IEMDC, (2005) May 458-465.
[5]Shukla R.D., Tripathi R.K., Gupta S., Power Electronics Applications in Wind Energy Conversion System: A Review, IEEE/ICPCES (2010) Dec.1-6.
[6]Kim H.S., Lu D.D.-C., Review on Wind Turbine Generators and Power Electronic Converters with the Grid-Connection Issues, IEEE/AUPEC (2010) Dec.1-6.
[7]Shahgholian Gh., Khani Kh., Moazzami, M., The Impact of DFIG Based Wind Turbines in Power System Load Frequency Control With Hydro Turbine, Dam and Hedroelectric Powerplant (2015) 1: 38-51.
[8]Zhe Chen J.M., Guerrero F., Blaabjerg, A Review of the State of the Art of Power Electronics for Wind Turbines, IEEE Trans, on Power Electronics (2009) 1859-1875.
[9]Muller S., Deicke M., De-Doncker R.W., Doubly Fed Induction Generator Systems for Wind Turbines, IEEE Industry Applications Magazine (2002) 8: 26-33.
[10]Santos-Martin D., Rodriguez-Amenedo J.L, Arnalte S., Direct Power Control Applied to Doubly Fed Induction Generator Under Unbalanced Grid Voltage Conditions, IEEE Trans. on Power Electronics (2008) 23: 2328-2336.
[11]Qiao W., Harley R.G., Venayagamoorthy G.K., Real-Time Implementation of a STATCOM on A Wind Farm Equipped With Doubly Fed Induction Generators, IEEE Trans. on Industry Applications (2009) 45: 98-107.
[12]Morren J., De-Haan S.W.H., Ride-Through of Wind Turbines With Doubly-Fed Induction Generator During A Voltage Dip, IEEE Trans. on Energy Conversion (2005) 20: 435-441.
[13]Muljadi E., Butterfield C.P., Chacon J., Romanowitz H., Power Quality Aspects in A Wind Power Plant, IEEE/PESGM (2006) 1-8.
[14]Yi T., Guangwei Y., Research on Impacts of Grid Voltage Sag on Wind Power System Reliability, IEEE/APPEEC (2012) March 1-5.
[15]Liu J., Liang H., Li W., Guo R., Research on Low Voltage Ride Through Capability of Wind Farms Grid Integration Using VSC-HVDC, IEEE/ISGT (2012) May 1-6.
[16]Abdel-Baqi O., Nasiri A., Series Voltage Compensation for DFIG Wind Turbine Low-Voltage Ride-Through Solution, IEEE Trans. on Energy Conversion (2011) 26: 272-280.
[17]Zhou L., Liu J., Zhou S., She H., A Fully Decoupled Feed-Forward Control for Low-Voltage Ride-Through of DFIG Based Wind Turbines, EEE/APEC (2014) March 3118-3124.
[18]Behera R.K., Gao W., Low Voltage Ride-Through and Performance Improvement of A Grid Connected DFIG System, IEEE/ICPS (2009) Dec. 1-6.
[19]Qiao W., Harley R.G., Venayagamoorthy G.K., Coordinated Reactive Power Control of a Large Wind Farm and a STATCOM Using Heuristic Dynamic Programming, IEEE Trans. on Energy Conversion (2009) 24: 493-503.
[20]Shahgholian Gh., Faiz J., Static Synchronous Compensator for Improving Performance of Power System: A Review, International Review of Electrical Engineering (2010) 4: 2333-2342.
[21]Anderson P.M., Fouad A.A., Power System Control and Stability (2002) ISBN 978-0-471-23862-1, Wiley-IEEE Press.
[22]Krause P.C., Wasynczuk O., Sudoff S.D., Analysis of Electric Machinary and Drive Systems (2002) ISBN 978-0471143260, John Wiley & Sons.
[23]Pokharel B., Modeling, Control and Analysis of Doubly Fed Induction Generator Based Wind Turbine System With Voltage Regulation, M.S. Thesis (2011) Publication Number 1506701.
[24]You J.J., Lee A.V., Applied Nonlinear Control (1991) ISBN 0-13-04890-8, Prentice Hall.
[25]Utkin V., Guldner J., Shi J., Sliding Mode Control in Electromechanical Systems (1999) ISBN 0-7484-0116-4, Taylor and Francis.
[26]Mi Z., Chen Y., Liu L., Yu Y., Dynamic Performance Improvement of Wind Farm with Doubly Fed Induction Generators Using STATCOM, IEEE/ Powercon (2010) Oct. 1-6.
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