In this paper we demonstrate that a passive vibration strategy can bring a one-degree-of-freedom ball to a specified periodic trajectory from all initial conditions. We draw motivation from the problem of parts feeding in sensorless assembly. We provide simulation results suggesting the relevance of our analysis to the parts feeding problem
The control of aerial gymnastic maneuvers is challenging because these maneuvers frequently involve ...
This study investigates the control involved in a task where subjects rhythmically bounce a ball wit...
Many tasks in robotics and automation require a cyclic exchange of energy between a machine and its ...
In this paper we demonstrate that a passive vibration strategy can bring a one-degree-of-freedom bal...
In this paper we demonstrate that a passive vibra-tion strategy can bring a 1 degree of freedom ball...
In this paper we demonstrate that a passive vibration strategy can bring a 1 degree of freedom ball ...
We describe simple one-dimensional models of passive (no energy input, no control), generally dissip...
Motivated by the problems of flexible manufacturing and parts feeding in sensor-less assembly, we pr...
The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for 2-D bounc...
The paper considers the feedback stabilization of periodic orbits in a planar juggler. The juggler i...
The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for 2D impact...
Biological systems like humans or animals have remarkable stability properties allowing them to perf...
This paper addresses the question relative to the role of sensory feedback in rhythmic tasks. We stu...
This paper addresses the question relative to the role of sensory feedback in rhythmic tasks. We stu...
Abstract: The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for...
The control of aerial gymnastic maneuvers is challenging because these maneuvers frequently involve ...
This study investigates the control involved in a task where subjects rhythmically bounce a ball wit...
Many tasks in robotics and automation require a cyclic exchange of energy between a machine and its ...
In this paper we demonstrate that a passive vibration strategy can bring a one-degree-of-freedom bal...
In this paper we demonstrate that a passive vibra-tion strategy can bring a 1 degree of freedom ball...
In this paper we demonstrate that a passive vibration strategy can bring a 1 degree of freedom ball ...
We describe simple one-dimensional models of passive (no energy input, no control), generally dissip...
Motivated by the problems of flexible manufacturing and parts feeding in sensor-less assembly, we pr...
The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for 2-D bounc...
The paper considers the feedback stabilization of periodic orbits in a planar juggler. The juggler i...
The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for 2D impact...
Biological systems like humans or animals have remarkable stability properties allowing them to perf...
This paper addresses the question relative to the role of sensory feedback in rhythmic tasks. We stu...
This paper addresses the question relative to the role of sensory feedback in rhythmic tasks. We stu...
Abstract: The paper studies the properties of a sinusoidally vibrating wedge billiard as a model for...
The control of aerial gymnastic maneuvers is challenging because these maneuvers frequently involve ...
This study investigates the control involved in a task where subjects rhythmically bounce a ball wit...
Many tasks in robotics and automation require a cyclic exchange of energy between a machine and its ...