Title :
Characteristic Model-Based Adaptive Discrete-Time Sliding Mode Control for the Swing Arm in a Fourier Transform Spectrometer
Author :
Zhou, Chunjie ; Shi, Yufeng ; Yang, Shuang-Hua ; Yin, Quan ; Qin, Yuanqing
Author_Institution :
Dept. of Control Sci. & Eng., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
This paper aims to guarantee high-precision tracking of the desired optical path difference velocity for a Fourier transform spectrometer (FTS) in a space exploration system with time-varying parameters and nonlinear dynamics. A novel characteristic model-based adaptive discrete-time sliding mode control (ADSMC) scheme is proposed. The design of the ADSMC includes characteristic modeling, characteristic model-based discrete-time sliding mode control, and the estimator of the uncertain coefficients. The stability analysis of the ADSMC is also given in this paper. Simulation and experimental results demonstrate that the proposed characteristic model-based ADSMC can achieve high-precision control over a Michelson interferometer-based FTS. The significant advantages of the proposed ADSMC are its robustness and better control performance over the external disturbance and internal parameter uncertainty of the system.
Keywords :
Fourier transform spectrometers; Michelson interferometers; adaptive control; aerospace control; discrete time systems; nonlinear dynamical systems; stability; time-varying systems; uncertain systems; variable structure systems; ADSMC; Fourier transform spectrometer; Michelson interferometer-based FTS; adaptive discrete time sliding mode control; characteristic model; nonlinear dynamics; optical path difference velocity tracking; parameter uncertainty; robustness; space exploration system; stability analysis; swing arm; time-varying parameter; uncertain coefficient estimator; Adaptation models; Mathematical model; Optical interferometry; Path planning; Sliding mode control; Switches; Adaptive estimation; Fourier transform spectrometer (FTS); characteristic model; discrete-time sliding mode control (DSMC);
Journal_Title :
Systems, Man, and Cybernetics, Part C: Applications and Reviews, IEEE Transactions on
DOI :
10.1109/TSMCC.2012.2212275