Adaptive tracking and obstacle avoidance for a class of mobile robots in the presence of unknown skidding and slipping

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초록

An adaptive control approach is proposed for path tracking and obstacle avoidance of mobile robots considering unknown skidding and slipping. The proposed adaptive controller consisting of a kinematic controller and a torque controller for the dynamic model is derived to compensate the unknown skidding and slipping effect. From Lyapunov-stability analysis, it is proved regardless of unknown skidding and slipping that all signals of the controlled closed-loop system are semiglobally uniformly ultimately bounded, the point tracking errors converge to an adjustable neighbourhood of the origin outside the obstacle detection region and the obstacle avoidance is guaranteed inside the obstacle detection region. The performance and stability of the proposed control system are verified from simulation results.

키워드

DYNAMIC SURFACE CONTROL; NONLINEAR-SYSTEMS
제목
Adaptive tracking and obstacle avoidance for a class of mobile robots in the presence of unknown skidding and slipping
저자
Yoo, S. J.
DOI
10.1049/iet-cta.2010.0644
발행일
2011-09
유형
Article
저널명
IET Control Theory and Applications
권
5
호
14
페이지
1597 ~ 1608