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Neuro-Sliding-Mode Control of Flexible-Link Manipulators Based on Singularly Perturbed Model

Yu ZHANGTangwen YANGZengqi SUN( )
State Key Laboratory on Intelligent Technology and Systems, Tsinghua National Laboratory for Information Science and Technology, Department of Computer Science and Technology, Tsinghua University, Beijing 100084, China
School of Computer and Information Technology, Beijing Jiaotong University, Beijing 100044, China
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Abstract

A neuro-sliding-mode control (NSMC) strategy was developed to handle the complex nonlinear dynamics and model uncertainties of flexible-link manipulators. A composite controller was designed based on a singularly perturbed model of flexible-link manipulators when the rigid motion and flexible motion are decoupled. The NSMC is employed to control the slow subsystem to track a desired trajectory with a traditional sliding mode controller to stabilize the fast subsystem which represents the link vibrations. A stability analysis of the flexible modes is also given. Simulations confirm that the NSMC performs better than the traditional sliding-mode control for controlling flexible-link manipulators. The control strategy not only gives good tracking performance for the joint angle, but also effectively suppresses endpoint vibrations. The simulations also show that the control strategy has a strong self-adaptive ability for controlling manipulators with different parameters.

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Tsinghua Science and Technology
Pages 444-451

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Cite this article:
ZHANG Y, YANG T, SUN Z. Neuro-Sliding-Mode Control of Flexible-Link Manipulators Based on Singularly Perturbed Model. Tsinghua Science and Technology, 2009, 14(4): 444-451. https://doi.org/10.1016/S1007-0214(09)70100-2

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Received: 01 May 2008
Revised: 26 October 2008
Published: 03 June 2026
© Tsinghua University Press 2009