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RoTip: A Finger-Shaped Tactile Sensor with Active Rotation Capability
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In recent years, advancements in optical tactile sensor technology have primarily centred on enhancing sensing precision and expanding the range of sensing modalities. To meet the requirements for more skilful manipulation, there should be a movement towards making tactile sensors more dynamic. In this paper, we introduce RoTip, a novel vision-based tactile sensor that is uniquely designed with an independently controlled joint and the capability to sense contact over its entire surface. The rotational capability of the sensor is particularly crucial for manipulating everyday objects, especially thin and flexible ones, as it enables the sensor to mobilize while in contact with the object's surface. The manipulation experiments demonstrate the ability of our proposed RoTip to manipulate rigid and flexible objects, and the full-finger tactile feedback and active rotation capabilities have the potential to explore more complex and precise manipulation tasks.
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Cited by 1 Pith paper
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GelBelt: A Vision-based Tactile Sensor for Continuous Sensing of Large Surfaces
Introduces GelBelt, a belt-based vision tactile sensor that continuously scans and stitches surface normal maps for 3D reconstruction of large, relatively flat surfaces at up to 45 mm/s.
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