Adative robust control of Electrical Load Simulator based on fuzzy logic compensation

This paper proposes adaptive robust torque controller for Electrical Load Simulator considering the effect of extra torque as disturbance and nonlinear friction. Mathematical model of ELS is derived and the adaptive robust law is derived. To estimate extra torque and non linear friction we propose f...

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Published in2011 International Conference on Fluid Power and Mechatronics pp. 861 - 867
Main Authors Ullah, N., Shaoping Wang, Aslam, J.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.08.2011
Subjects
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ISBN1424484510
9781424484515
DOI10.1109/FPM.2011.6045882

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Abstract This paper proposes adaptive robust torque controller for Electrical Load Simulator considering the effect of extra torque as disturbance and nonlinear friction. Mathematical model of ELS is derived and the adaptive robust law is derived. To estimate extra torque and non linear friction we propose fuzzy logic system. LuGre friction model is used to validate the proposed scheme estimation. The stability of proposed controller with fuzzy compensator is derived using Lyapunov stability criteria and the adaptive law is derived. The validity of proposed controller is verified using computer simulations for estimation and compensation of friction and extra torque with torque tracking performance.
AbstractList This paper proposes adaptive robust torque controller for Electrical Load Simulator considering the effect of extra torque as disturbance and nonlinear friction. Mathematical model of ELS is derived and the adaptive robust law is derived. To estimate extra torque and non linear friction we propose fuzzy logic system. LuGre friction model is used to validate the proposed scheme estimation. The stability of proposed controller with fuzzy compensator is derived using Lyapunov stability criteria and the adaptive law is derived. The validity of proposed controller is verified using computer simulations for estimation and compensation of friction and extra torque with torque tracking performance.
Author Shaoping Wang
Ullah, N.
Aslam, J.
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  surname: Shaoping Wang
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  givenname: J.
  surname: Aslam
  fullname: Aslam, J.
  email: Jawad_mtsa@yahoo.com
  organization: Sch. of Autom. Sci. & Electr. Eng., Beihang Univ., Beijing, China
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Snippet This paper proposes adaptive robust torque controller for Electrical Load Simulator considering the effect of extra torque as disturbance and nonlinear...
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SubjectTerms Actuators
Adaptive Robust control
DC motors
ELS
Extra torque and friction
Friction
Fuzzy logic
Load modeling
Mathematical model
Torque
Title Adative robust control of Electrical Load Simulator based on fuzzy logic compensation
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