Affiliation:
1. Changchun Institute of Optics, Fine Mechanics and Physics, Academy of Sciences, Changchun 130033, China
Abstract
The backlash by the hysteresis between the input and the output is always present in the inertial stabilized platform, which will seriously affect the dynamic performance of the platform system at low speed. So, the backlash has been paid more and more attention for the use in the inertial stabilized platform. To handle such a situation, extend disturbance observer (EDOB) has a high advantage to compensate the disturbance caused by backlash. However, some research studies show that the observation effect for some fast time-varying disturbances is satisfactory, which will strict limits on the rate of change in disturbance and still hamper its application; consequently, this paper proposes a sliding-mode-based extend disturbance observer (SMEDO) to compensate backlash. By well-designed sliding-mode surface, it is unnecessary to measure the whole state and the lack of robustness against unmatched uncertainties of the resulting controller, and the robustness and accuracy of modified disturbance observer can be enhanced. Experiments were carried out on a DSP-based platform with backlash in the pitch shafting. The obtained experimental results demonstrate that the SMEDO scheme has an improved performance with the dynamic performance and shafting transmission accuracy compared with the traditional methods.
Funder
National Natural Science Foundation of China
Subject
General Engineering,General Mathematics
Reference27 articles.
1. The elimination ways of the gear-driven clearance;L. Q. Wu;Machine Tool & Hydraulics,2005
2. A nonlinear compensation method for Backlash transmission Backlash in Servo System
3. Adaptive control of system with unknown output backlash
4. Variable structure control of system with nonlinear friction and dynamic backlash;A. Azenha;IFAC Proceedings Volumes,1996
5. Identification and control of Sandwich system with backlash
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