Analysis and Simulation of Horizontal Axis Wind Turbine Control Using Coefficient Diagram Method / Two-Mass Model

Authors

  • A.Mfedel Laboratory of energetic, Faculty of science, Abdelmalek Essadi University, BP. 2121 M'Hannech II, Tetouan, Morocco
  • A.Djebli Laboratory of energetic, Faculty of science, Abdelmalek Essadi University, BP. 2121 M'Hannech II, Tetouan, Morocco

Keywords:

Two-mass system, Coefficient Diagram Method, FOPDT

Abstract

In this paper, the Coefficient Diagram Method is used to control the two-mass drive train system. For this, a first-order plus time delay (FOPTD) model is used. The various approaches used in the FOPTD are analyzed, and the polynomial controller has been designed, and its control action is discussed. As a result, for the two-mass system, it is observed that the designed polynomial CDM controller exhibits better outcomes for the TD approximation followed by the Padé approximation. However, the TN approximation is generally not recommended for successful performance.

References

R. Hirokawa and K. Sato, “Autopilot Design for a Missile with Reaction-Jet Using Coefficient Diagram Method,” no. August, pp. 1–8, 2001.

I. Kaya, N. Tan, and D. P. Atherton, “A simple procedure for improving performance of PID controllers,” IEEE Conf. Control Appl. - Proc., vol. 2, pp. 882–885, 2003, doi: 10.1109/cca.2003.1223126.

D. Chen and D. E. Seborg, “PI/PID controller design based on direct synthesis and disturbance rejection,” Ind. Eng. Chem. Res., vol. 41, no. 19, pp. 4807–4822, 2002, doi: 10.1021/ie010756m.

U. Tochukwu, “Effects of PID Controller on a Closed Loop Feedback System EFFECTS OF A PID CONTROLLER IN CLOSED LOOP,” Res. Gate, no. December, 2014, doi: 10.13140/2.1.2650.0167.

G. Shahgholian, “Controller Design for Three-Mass Resonant System Based on Polynomial Method,” Int. J. Sci. Technol. Soc., vol. 5, no. 2, p. 13, 2017, doi: 10.11648/j.ijsts.20170502.11.

J. Cvejn, “PI/PID controller design for FOPDT plants based on the modulus optimum criterion,” Proc. 2011 12th Int. Carpathian Control Conf. ICCC’2011, pp. 60–65, 2011, doi: 10.1109/CarpathianCC.2011.5945816.

B. S. Mózo, ??No Title No Title, vol. 53, no. 9. 2017.

G. Azevedo, “Modeling of a Variable Speed Wind Turbine with a Permanent Magnet Synchronous Generator,” no. ISlE, pp. 734–739, 2009.

R. Melício, V. M. F. Mendes, and J. P. S. Catalão, “Wind turbines equipped with fractional-order controllers?: Stress on the mechanical drive train due,” no. May 2010, pp. 13–25, 2011, doi: 10.1002/we.

M. Tahiri, A. Djebli, and A. Mimet, “Drivetrain flexibility effect on control performance of a horizontal axis wind turbine,” Int. J. Appl. Eng. Res., vol. 12, no. 16, pp. 5511–5519, 2017.

B. Boukhezzar and H. Siguerdidjane, “Nonlinear control of variable speed wind turbines without wind speed measurement,” Proc. 44th IEEE Conf. Decis. Control. Eur. Control Conf. CDC-ECC ’05, vol. 2005, no. 3, pp. 3456–3461, 2005, doi: 10.1109/CDC.2005.1582697.

B. A. F, “INNM % C?; = 7 7CBHFC @ GHF5H9?; M?: CF HF57?? = B?; H < 9 A5L = AIA DCK9F DC = BH,” vol. 19, pp. 599–606, 2015, doi: 10.1016/j.protcy.2015.02.085.

T. M. O’Sullivan, C. M. Bingham, and N. Schofield, “High-performance control of dual-inertia servo-drive systems using low-cost integrated SAW torque transducers,” IEEE Trans. Ind. Electron., vol. 53, no. 4, pp. 1226–1237, 2006, doi: 10.1109/TIE.2006.878311.

G. Shahgholian, J. Faiz, and P. Shafaghi, “Analysis and simulation of speed control for two-mass resonant system,” 2009 Int. Conf. Comput. Electr. Eng. ICCEE 2009, vol. 2, no. August, pp. 666–670, 2009, doi: 10.1109/ICCEE.2009.41.

S. E. Hamamci, “Simple Polynomial Controller Design by the Coefficient Diagram Method,” no. January 2004, 2014.

S. Manabe, COEFFICIENT DIAGRAM METHOD IN MIMO APPLICATION: AN AEROSPACE CASE STUDY, vol. 38, no. 1. IFAC, 2005.

R. Bakerey, K. Elssadig, D. Eltahir, and M. Hussien, “Function using FOPDT, SOPDT and SKOGESTAD in Control System,” Int. J. Eng. Appl. Manag. Sci. Paradig., vol. 42, no. 01, p. 1, 2016.

A. Patra, “PID Controller Tuning using Ziegler-Nichols Method for Speed Control of DC PID Controller Tuning using Ziegler-Nichols Method for Speed Control of DC Motor,” no. September, 2018.

D. Xue, Y. Chen, D. P. Atherton, and G. Gu, “Linear Feedback Control—Analysis and Design with Matlab,” IEEE Control Syst., vol. 29, no. 1, pp. 128–129, 2009, doi: 10.1109/MCS.2008.930839.

J. P. Coelho, T. M. Pinho, and J. Boaventura-cunha, “Controller System Design Using the Coefficient Diagram Method,” 2016, doi: 10.1007/s13369-016-2235-y.

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Published

2022-09-03

How to Cite

A.Mfedel, & A.Djebli. (2022). Analysis and Simulation of Horizontal Axis Wind Turbine Control Using Coefficient Diagram Method / Two-Mass Model. International Journal of Applied Sciences: Current and Future Research Trends, 14(1), 89–108. Retrieved from https://ijascfrtjournal.isrra.org/index.php/Applied_Sciences_Journal/article/view/1271

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