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Manuel Catalano

5 accepted papers

2019

Dynamic morphological computation through damping design of soft material robots: application to under-actuated grippers

ICRA 2019poster

This article presents the design of soft material robots with tunable damping properties. This study derives from the investigation of an under-actuated dynamic approach involving multi-chamber pneumatic systems. The co-design of the mechanical parameters (stiffness and damping) of the system along…

Cited by 8SourceScholar
2018

A Novel Approach to Under-Actuated Control of Fluidic Systems

ICRA 2018poster

Thanks to the growing interest in soft robotics, hydropneumatics and inflatable system dynamics are attracting renewed attention from the scientific community. Typical fluidic systems are composed of several chambers and require a complex and bulky network of active components for their control. Thi…

Cited by 4SourceScholar
2017

Estimating contact forces from postural measures in a class of under-actuated robotic hands

IROS 2017poster

Sensing contact forces can be a key enabler for higher order dexterous manipulation in robotic hands. To sense the full range of contact pressure distribution would provide the best solution, but it is in practice unfeasible when considering very deformable and adaptable hands. This paper proposes a…

Cited by 11SourceScholar
2017

Tele-impedance with force feedback under communication time delay

IROS 2017poster

Tele-operation in the presence of environmental constraints is a well-studied problem, where the difficulties of the transparency-stability trade-off have been elucidated by several important studies. While at the state-of-art, passivity-based stabilizers appear to provide the best insight and comma…

Cited by 16SourceScholar
2015

Design and realization of the CUFF - clenching upper-limb force feedback wearable device for distributed mechano-tactile stimulation of normal and tangential skin forces

IROS 2015poster

Rendering forces to the user is one of the main goals of haptic technology. While most force-feedback interfaces are robotic manipulators, attached to a fixed frame and designed to exert forces on the users while being moved, more recent haptic research introduced two novel important ideas. On one s…

Cited by 155SourceScholar