2012•Unpublished venueRequires access

Terminal sliding mode control for a military robot system with nonlinear disturbance observer

Xie Xiaozhu, Pan Xueqin, Kou Deqi

Open publisher page 3 citations

Abstract

A novel type of control scheme combined the nonlinear disturbance observer based control (NDOBC) with terminal sliding mode control is proposed for a military robot system. The terminal sliding mode controller is designed for the robot system by adopting a non-singular terminal sliding mode manifold. This controller can make the states not only reach the manifold in finite time, but also obtain a faster convergence and a better tracking precision. Meanwhile, design the nonlinear disturbance observer to observe the uncertainties and disturbance of the system. The chattering of sliding mode control is reduced. The proposed controller can guarantee stabilization of the tracing system. Simulation results show that the controller is valid.

About this research paper

What this paper is about

A novel type of control scheme combined the nonlinear disturbance observer based control (NDOBC) with terminal sliding mode control is proposed for a military robot system. The terminal sliding mode controller is designed for the robot system by adopting a non-singular terminal sliding mode manifold. This controller can make the states not only reach the manifold in finite time, but also obtain a faster convergence and a better tracking precision. Meanwhile, design the nonlinear disturbance observer to observe the uncertainties and disturbance of the system. The chattering of sliding mode control is reduced. The proposed controller can guarantee stabilization of the tracing system. Simulation results show that the controller is valid.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A novel type of control scheme combined the nonlinear disturbance observer based control (NDOBC) with terminal sliding mode control is proposed for a military robot system. The terminal sliding mode controller is designed for the robot system by adopting a non-singular terminal sliding mode manifold. This controller can make the states not only reach the manifold in finite time, but also obtain a faster convergence and a better tracking precision. Meanwhile, design the nonlinear disturbance observer to observe the uncertainties and disturbance of the system. The chattering of sliding mode control is reduced. The proposed controller can guarantee stabilization of the tracing system. Simulation results show that the controller is valid.

Key concepts: Terminal sliding mode, Control theory (sociology), Sliding mode control, Controller (irrigation), Nonlinear system, Robot, Manifold (fluid mechanics), Computer science

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