Adaptive Dynamic Surface Control of Bouc–Wen Hysteretic Systems

Author:

Peimani Mansour1,Yazdanpanah Mohammad Javad2,Khaji Naser3

Affiliation:

1. Department of Electrical Engineering, Science and Research Branch, Islamic Azad University, Tehran 1477893855, Iran e-mail:

2. Control and Intelligent Processing Center of Excellence, School of Electrical and Computer Engineering, University of Tehran, Tehran 1439957131, Iran e-mail:

3. Faculty of Civil and Environmental Engineering, Tarbiat Modares University, Tehran 14115-397, Iran e-mail:

Abstract

This paper develops an adaptive dynamic surface algorithm for designing the control law for uncertain hysteretic structural systems with seismic disturbances that can be converted to a semi strict feedback form. Hysteretic behavior is usually described by Bouc–Wen model for hysteretic structural systems like base isolation systems. Adaptive sliding mode and adaptive backstepping algorithms are also studied and simulated for comparison purposes. The presented simulation results indicate the effectiveness of the proposed control law in reducing displacement, velocity and acceleration responses of the structural system with acceptable control force. Moreover, using dynamic surface control (DSC), the study analyzes the stability of the controlled system based on the Lyapunov theory.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference22 articles.

1. Parameter Estimation in Hysteretic Systems Based on Adaptive Least-Squares;J. Inf. Syst. Telecommun.,2013

2. Comparison of Adaptive Structural Damage Identification Techniques in Nonlinear Hysteretic Vibration Isolation Systems;Earthquake Eng. Eng. Vib.,2013

3. A Pattern Recognition Technique for Structural Identification Using Observed Vibration Signals: Nonlinear Case Studies;Eng. Struct.,2008

4. DeVore, C., Chang, C.-M., and Spencer, Jr., B., 2007, “Active Base Isolation of Building Structures in Two Dimensions,” Earthquake Engineering Symposium for Young Researchers, pp. 1–10.

5. Maldonado-Mercado, J. C., 1995, “Passive and Active Control of Structures,” Doctoral dissertation, Massachusetts Institute of Technology, Cambridge, MA.

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