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FUZZY CONTROL AND SLİDİNG MODE FUZZY CONTROL OF DC MOTOR

Yıl 2014, Cilt: 32 Sayı: 1, 97 - 108, 01.03.2014

Öz

Direct current (DC) motors are often used in application that position and speed control require. During operation of DC motors, while parameters such as resistance and inductance varies with time, motors may be exposed to the uncertainties loads. For this reason, especially the control method applied in the high-accuracy systems must be best selected. In this study, a method which more durable based on fuzzy control has been developed synthesizing sliding mode control with fuzzy control methods. Parameter variations and uncertainties is carry out using Matlab/Simulink/Robust Control Toolbox. Resistance and inductance is given tolerance, load is offer uncertainly. By looking at the results of the simulation sliding mode fuzzy control method based on fuzzy control method has been concluded that is more stable against load variations and uncertainties, settling time is shorter than, and the system reaches a faster reference signal.

Kaynakça

  • [1] İ. Yüksel, Otomatik Kontrol Sistem Dinamiği ve Denetim Sistemleri, Matlab ile Genişletilmiş 6. Baskı, Nobel Yayın Dağıtım, Ankara, 2009.
  • [2] B.C. Kuo, Otomatik kontrol Sistemleri, 7. Baskı, Literatür Yayıncılık, İstanbul, 1999.
  • [3] L.A. Zadeh, “Fuzzy Sets, Information and Control”, 8, 1965, s. 338-353.
  • [4] S. Assilian and E.H. Mamdani, “An Experiment in Linguistic Synthesis with a Fuzzy Logic Controller”, Int. J. Man-Machine Studies, 7(1), 1974, s. 1-13.
  • [5] W.J.M. Kickert and H.R. van Nauta Lemke, “Application of a Fuzzy Controller in a Warm Water Plant”, Automatica, 12(4), 1976, s. 301-308.
  • [6] Z.H. Akpolat, Application of Fuzzy Sliding Mode Control and Electronic Load Emulation to the Robust Control of Motor Drives, Ph.D.Thesis, University of Nottingham, 1999.
  • [7] G.F. Franklin, J.D. Powell and M.L. Workman, Digital Control of Dynamic Systems, 3rd edn., Menlo Park, CA: Addison-Wesley, 1998.
  • [8] V. Utkin, J. Guldner and J. Shi, Sliding Mode Control in Electro-Mechanical Systems, 2nd edn., Crc Press, Taylor and Francis Group, 2009.
  • [9] M. Namazov, O. Baştürk, “DC Motor Position Control Using Fuzzy Proportional-Derivative Controllers with Different Defuzzification Methods”, Turkish J. of Fuzzy Syst., Vol. 1, 2010, s. 36-54.
  • [10] J.Y. Hung, W.B. Gao and J.C. Hung, “Variable Structure Control”, A survey, IEEE Trans. Ind. Electron., 40, no.1, 1993, s. 2-22.
  • [11] J.J.E. Slotine and W. Li, Applied Nonlinear Control, Prentice-Hall, 1991.
  • [12] G. Rustamov, M. Namazov, R. Samet, “Sliding Modes in Finite-Time Control Systems with Variable Structure”, Proc. of 9th WSEAS Int. Conf. on Automatic Control, Modeling and Simulation, İstanbul, 2007, s. 118-122.
  • [13] A. Altınörs, Tip-II Bulanık Mantık ve Kayma Kipli Kontrol Yöntemleri ile Servo Sistemlerin Dayanıklı Kontrolü, Doktora Tezi, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, 2007.
  • [14] M. Fallahi and S. Azadi, “Fuzzy PID Sliding Mode Controller Design for the Position Control of a DC Motor”, International Conference on Education Technology and Computer, 2009, s. 73-77.
Yıl 2014, Cilt: 32 Sayı: 1, 97 - 108, 01.03.2014

Öz

Kaynakça

  • [1] İ. Yüksel, Otomatik Kontrol Sistem Dinamiği ve Denetim Sistemleri, Matlab ile Genişletilmiş 6. Baskı, Nobel Yayın Dağıtım, Ankara, 2009.
  • [2] B.C. Kuo, Otomatik kontrol Sistemleri, 7. Baskı, Literatür Yayıncılık, İstanbul, 1999.
  • [3] L.A. Zadeh, “Fuzzy Sets, Information and Control”, 8, 1965, s. 338-353.
  • [4] S. Assilian and E.H. Mamdani, “An Experiment in Linguistic Synthesis with a Fuzzy Logic Controller”, Int. J. Man-Machine Studies, 7(1), 1974, s. 1-13.
  • [5] W.J.M. Kickert and H.R. van Nauta Lemke, “Application of a Fuzzy Controller in a Warm Water Plant”, Automatica, 12(4), 1976, s. 301-308.
  • [6] Z.H. Akpolat, Application of Fuzzy Sliding Mode Control and Electronic Load Emulation to the Robust Control of Motor Drives, Ph.D.Thesis, University of Nottingham, 1999.
  • [7] G.F. Franklin, J.D. Powell and M.L. Workman, Digital Control of Dynamic Systems, 3rd edn., Menlo Park, CA: Addison-Wesley, 1998.
  • [8] V. Utkin, J. Guldner and J. Shi, Sliding Mode Control in Electro-Mechanical Systems, 2nd edn., Crc Press, Taylor and Francis Group, 2009.
  • [9] M. Namazov, O. Baştürk, “DC Motor Position Control Using Fuzzy Proportional-Derivative Controllers with Different Defuzzification Methods”, Turkish J. of Fuzzy Syst., Vol. 1, 2010, s. 36-54.
  • [10] J.Y. Hung, W.B. Gao and J.C. Hung, “Variable Structure Control”, A survey, IEEE Trans. Ind. Electron., 40, no.1, 1993, s. 2-22.
  • [11] J.J.E. Slotine and W. Li, Applied Nonlinear Control, Prentice-Hall, 1991.
  • [12] G. Rustamov, M. Namazov, R. Samet, “Sliding Modes in Finite-Time Control Systems with Variable Structure”, Proc. of 9th WSEAS Int. Conf. on Automatic Control, Modeling and Simulation, İstanbul, 2007, s. 118-122.
  • [13] A. Altınörs, Tip-II Bulanık Mantık ve Kayma Kipli Kontrol Yöntemleri ile Servo Sistemlerin Dayanıklı Kontrolü, Doktora Tezi, Fırat Üniversitesi, Fen Bilimleri Enstitüsü, 2007.
  • [14] M. Fallahi and S. Azadi, “Fuzzy PID Sliding Mode Controller Design for the Position Control of a DC Motor”, International Conference on Education Technology and Computer, 2009, s. 73-77.
Toplam 14 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Articles
Yazarlar

Basri Yaraş Bu kişi benim

Rafael Hüseynov Bu kişi benim

Manafeddin Namazov Bu kişi benim

İbrahim Emre Çelikkale Bu kişi benim

Mustafa Şeker Bu kişi benim

Yayımlanma Tarihi 1 Mart 2014
Gönderilme Tarihi 21 Şubat 2013
Yayımlandığı Sayı Yıl 2014 Cilt: 32 Sayı: 1

Kaynak Göster

Vancouver Yaraş B, Hüseynov R, Namazov M, Çelikkale İE, Şeker M. FUZZY CONTROL AND SLİDİNG MODE FUZZY CONTROL OF DC MOTOR. SIGMA. 2014;32(1):97-108.

IMPORTANT NOTE: JOURNAL SUBMISSION LINK https://eds.yildiz.edu.tr/sigma/