Abstract:
This paper discusses the non-grasp dynamic manipulation of a deformable object inspired by the handling mechanism of pizza master. The master handles a tool where a plate...Show MoreMetadata
Abstract:
This paper discusses the non-grasp dynamic manipulation of a deformable object inspired by the handling mechanism of pizza master. The master handles a tool where a plate is attached at the tip of a bar, and he remotely manipulates a pizza on the plate. We found that he aggressively utilizes two DOFs (degrees of freedom), such that the linear motion along the bar and the rotational one around the bar, in order to produce quick plate motions for dynamically manipulating the object. Applying this handling mechanism to the robot system, we first show how to rotate an object by using the two DOFs of plate motion. We then reveal that the deformation of the object generated by dynamic effects can drastically contribute to high-speed and stable rotation, just like human steps for turn on the floor. By both simulation and experiment, we show that there exists the optimum plate motion leading to the maximum rotational speed of the object.
Date of Conference: 12-17 May 2009
Date Added to IEEE Xplore: 18 August 2009
ISBN Information:
Print ISSN: 1050-4729
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- IEEE Keywords
- Index Terms
- Deformable Objects ,
- Handling Mechanisms ,
- Degrees Of Freedom ,
- Rotational Speed ,
- Dynamic Effects ,
- Translational Motion ,
- High Rotational Speed ,
- Plate Motion ,
- Center Of Mass ,
- Actuator ,
- Angular Velocity ,
- Counterclockwise ,
- Rigid Body ,
- Friction Coefficient ,
- Path Planning ,
- Friction Force ,
- Rotational Motion ,
- Pressure Distribution ,
- Object-oriented ,
- Object Motion ,
- Object Velocity ,
- Robot Motion ,
- Active Joint ,
- Amplitude Of Motion ,
- Soft Contact ,
- Negative Moment ,
- Inertial Load ,
- High-speed Motion
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Deformable Objects ,
- Handling Mechanisms ,
- Degrees Of Freedom ,
- Rotational Speed ,
- Dynamic Effects ,
- Translational Motion ,
- High Rotational Speed ,
- Plate Motion ,
- Center Of Mass ,
- Actuator ,
- Angular Velocity ,
- Counterclockwise ,
- Rigid Body ,
- Friction Coefficient ,
- Path Planning ,
- Friction Force ,
- Rotational Motion ,
- Pressure Distribution ,
- Object-oriented ,
- Object Motion ,
- Object Velocity ,
- Robot Motion ,
- Active Joint ,
- Amplitude Of Motion ,
- Soft Contact ,
- Negative Moment ,
- Inertial Load ,
- High-speed Motion