A Miniaturised Camera-based Multi-Modal Tactile Sensor

arxiv(2023)

引用 4|浏览26
暂无评分
摘要
In conjunction with huge recent progress in camera and computer vision technology, camera-based sensors have increasingly shown considerable promise in relation to tactile sensing. In comparison to competing technologies (be they resistive, capacitive or magnetic based), they offer super-high-resolution, while suffering from fewer wiring problems. The human tactile system is composed of various types of mechanoreceptors, each able to perceive and process distinct information such as force, pressure, texture, etc. Camera-based tactile sensors such as GelSight mainly focus on high-resolution geometric sensing on a flat surface, and their force measurement capabilities are limited by the hysteresis and non-linearity of the silicone material. In this paper, we present a miniaturised dome-shaped camera-based tactile sensor that allows accurate force and tactile sensing in a single coherent system. The key novelty of the sensor design is as follows. First, we demonstrate how to build a smooth silicone hemispheric sensing medium with uniform markers on its curved surface. Second, we enhance the illumination of the rounded silicone with diffused LEDs. Third, we construct a force-sensitive mechanical structure in a compact form factor with usage of springs to accurately perceive forces. Our multi-modal sensor is able to acquire tactile information from multi-axis forces, local force distribution, and contact geometry, all in real-time. We apply an end-to-end deep learning method to process all the information.
更多
查看译文
关键词
accurate force,cam-era,camera-based sensors,camera-based tactile sensors,competing technologies,computer vision technology,fewer wiring problems,force measurement capabilities,force-sensitive mechanical structure,high-resolution geometric sensing,huge recent progress,human tactile system,local force distribution,miniaturised camera-based multimodal tactile sensor,miniaturised dome-shaped camera,multiaxis forces,multimodal sensor,sensor design,single coherent system,smooth silicone hemispheric sensing medium,super-high-resolution,tactile information,tactile sensing
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要