In this paper we present a mathematical framework to describe the interaction between compliant hands and environmental constraints during grasping tasks. In the proposed model, we considered compliance at wrist, joint and contact level. We modeled the general case in which the hand is in contact with the object and the surrounding environment. All the other contact cases can be derived from the proposed system of equations. We performed several numerical simulation using the SynGrasp Matlab Toolbox to prove the consistency of the proposed model. We tested different combinations of compliance as well as different reference inputs for the hand/arm system considered. This work has to be intended as a tool for compliant hand designer since it allows to tune compliance at different levels before the real hand realization. Furthermore, the same framework can be used for compliant hand simulation in order to study the interaction with the environmental constrains and to plan complex manipulation tasks.
Salvietti, G., Malvezzi, M., Gioioso, G., Prattichizzo, D. (2015). Modeling Compliant Grasps Exploiting Environmental Constraints. In Proc. 2015 IEEE International Conference on Robotics and Automation (ICRA) (pp.4941-4946). New York : IEEE [10.1109/ICRA.2015.7139885].
Modeling Compliant Grasps Exploiting Environmental Constraints
Salvietti, G.;Malvezzi, M.;Gioioso, G.;Prattichizzo, D.
2015-01-01
Abstract
In this paper we present a mathematical framework to describe the interaction between compliant hands and environmental constraints during grasping tasks. In the proposed model, we considered compliance at wrist, joint and contact level. We modeled the general case in which the hand is in contact with the object and the surrounding environment. All the other contact cases can be derived from the proposed system of equations. We performed several numerical simulation using the SynGrasp Matlab Toolbox to prove the consistency of the proposed model. We tested different combinations of compliance as well as different reference inputs for the hand/arm system considered. This work has to be intended as a tool for compliant hand designer since it allows to tune compliance at different levels before the real hand realization. Furthermore, the same framework can be used for compliant hand simulation in order to study the interaction with the environmental constrains and to plan complex manipulation tasks.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/980532