Robust-Optimal Fuzzy Model-Based Control of Flexible Spacecraft With Actuator Constraint

Author:

Sendi Chokri1,Ayoubi Mohammad A.2

Affiliation:

1. Department of Mechanical Engineering, Santa Clara University, Santa Clara, CA 95053 e-mail:

2. Associate Professor Department of Mechanical Engineering, Santa Clara University, Santa Clara, CA 95053 e-mail:

Abstract

This paper presents a robust-optimal fuzzy controller for position and attitude stabilization and vibration suppression of a flexible spacecraft during antenna retargeting maneuver. The fuzzy controller is based on Takagi–Sugeno (T–S) fuzzy model and uses the parallel distributed compensator (PDC) technique to quadratically stabilize the closed-loop system. The proposed controller is robust to parameter and unstructured uncertainties of the model. We improve the performance and the efficiency of the controller by minimizing the upper bound of the actuator's amplitude and maximizing the uncertainties terms included in the T–S fuzzy model. In addition to actuator amplitude constraint, a fuzzy model-based observer is considered for estimating unmeasurable states. Using Lyapunov stability theory and linear matrix inequalities (LMIs), we formulate the problem of designing an optimal-robust fuzzy controller/observer with actuator amplitude constraint as a convex optimization problem. Numerical simulation is provided to demonstrate and compare the stability, performance, and robustness of the proposed fuzzy controller with a baseline nonlinear controller.

Publisher

ASME International

Subject

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

Reference28 articles.

1. Dynamics and Control of Spacecraft With Retargeting Flexible Antennas;J. Guid. Control Dyn.,1990

2. Robust Eigensystem Assignment for Flexible Structures;J. Guid. Control Dyn.,1989

3. Robust Closed-Loop Control Design for Spacecraft Slew Maneuver Using Thrusters;J. Guid. Control Dyn.,1995

4. Control of Flexible Spacecraft With Time-Varying Configuration;J. Guid. Control Dyn.,1992

5. Turner, J. D., and Junkins, J. L., 1979, “Optimal Large Angle Maneuver With Simultaneous Shape Control/Vibration Arrest,” Flight Mechanics/Estimation Theory Symposium, Goddard Space Flight Center, Greenbelt, MD, NASA Conference Publication 2123, pp. 201–214.http://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/19800019888.pdf#page=209

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