This paper studies the issue of adaptive trajectory tracking control for an underactuated vibro-driven capsule system and presents a novel motion generation framework. In this framework, feasible motion trajectory is derived through investigating dynamic constraints and kernel control indexes that underlie the underactuated dynamics. Due to the underactuated nature of the capsule system, the global motion dynamics cannot be directly controlled. The main objective of optimization is to indirectly control the friction-induced stick–slip motions to reshape the passive dynamics and, by doing so, to obtain optimal system performance in terms of average speed and energy efficacy. Two tracking control schemes are designed using a closed-loop feedb...
In this paper, a special underactuated system a capsule robot, also called capsubot, is studied to i...
Vibro-driven robotic (VDR) systems use stick-slip motions for locomotion. Due to the underactuated n...
Motivated by the desire to optimally control the friction-induced stick-slip locomotion and sufficie...
This paper studies the issue of adaptive trajectory tracking control for an underactuated vibro-driv...
This paper studies the issue of adaptive trajectory tracking for an underactuated vibro-driven caps...
This paper proposes a novel geometric analysis-based trajectory planning approach for underactuated ...
A capsule system driven by a harmonic force applied to its inner mass is considered in this study. F...
Motivated by the desire to optimally control the friction-induced stick-slip locomotion and sufficie...
This paper studies the dynamic frictional interactions of the underactuated vibro-driven capsule sys...
This paper studies the nonlinear dynamics of a two-degree-of-freedom vibro-driven capsule system. Th...
Trajectory tracking control of underactuated systems is one of the challenging issues. This paper pr...
This paper studies modelling and dynamic analysis of underactuated capsule systems exhibiting fricti...
International audienceA capsule system driven by a harmonic force applied to its inner mass is consi...
In this paper, a special underactuated system – a capsule robot, also called capsubot, is studied to...
In this paper, a special underactuated system a capsule robot, also called capsubot, is studied to i...
Vibro-driven robotic (VDR) systems use stick-slip motions for locomotion. Due to the underactuated n...
Motivated by the desire to optimally control the friction-induced stick-slip locomotion and sufficie...
This paper studies the issue of adaptive trajectory tracking control for an underactuated vibro-driv...
This paper studies the issue of adaptive trajectory tracking for an underactuated vibro-driven caps...
This paper proposes a novel geometric analysis-based trajectory planning approach for underactuated ...
A capsule system driven by a harmonic force applied to its inner mass is considered in this study. F...
Motivated by the desire to optimally control the friction-induced stick-slip locomotion and sufficie...
This paper studies the dynamic frictional interactions of the underactuated vibro-driven capsule sys...
This paper studies the nonlinear dynamics of a two-degree-of-freedom vibro-driven capsule system. Th...
Trajectory tracking control of underactuated systems is one of the challenging issues. This paper pr...
This paper studies modelling and dynamic analysis of underactuated capsule systems exhibiting fricti...
International audienceA capsule system driven by a harmonic force applied to its inner mass is consi...
In this paper, a special underactuated system – a capsule robot, also called capsubot, is studied to...
In this paper, a special underactuated system a capsule robot, also called capsubot, is studied to i...
Vibro-driven robotic (VDR) systems use stick-slip motions for locomotion. Due to the underactuated n...
Motivated by the desire to optimally control the friction-induced stick-slip locomotion and sufficie...