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Screw Dynamic Modeling and Novel Composite Error-Based Second-order Sliding Mode Dynamic Control for a Bilaterally Symmetrical Hybrid Robot

Qiuyue Qin, Guoqin Gao

Year
2021
Citations
11

Abstract

SUMMARY In this research, a dynamic model is first established based on screw theory and the principle of virtual work for a bilaterally symmetrical hybrid robot. By combining a novel composite error (NCE) with second-order nonsingular fast terminal sliding mode (SONFTSM) control method, a NCE-based SONFTSM dynamic control method is further presented to guarantee better trajectory tracking performance and synchronization performance simultaneously. The asymptotic convergence of proposed errors and the stability of the proposed control method have been proved theoretically. Finally, the simulation and experiment are implemented to validate the effectiveness of the proposed control method.

Keywords

Control theory (sociology)Computer scienceTrajectoryConvergence (economics)Tracking errorSynchronization (alternating current)Sliding mode controlRobotMode (computer interface)Screw theory

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