paper-with-me

Papers

Digitizing Touch with an Artificial Multimodal Fingertip

2024-11-04 · Mike Lambeta, Tingfan Wu, Ali Sengul, Victoria Rose Most, Nolan Black, Kevin Sawyer, Romeo Mercado, Haozhi Qi, Alexander Sohn, Byron Taylor, Norb Tydingco, Gregg Kammerer, Dave Stroud, Jake Khatha, Kurt Jenkins, Kyle Most, Neal Stein, Ricardo Chavira, Thomas Craven-Bartle, Eric Sanchez, Yitian Ding, Jitendra Malik, Roberto Calandra

Touch is a crucial sensing modality that provides rich information about object properties and interactions with the physical environment. Humans and robots both benefit from using touch to perceive and interact with the surrounding environment (Johansson and Flanagan, 2009; Li et al., 2020; Calandra et al., 2017). However, no existing systems provide rich, multi-modal digital touch-sensing capabilities through a hemispherical compliant embodiment. Here, we describe several conceptual and technological innovations to improve the digitization of touch. These advances are embodied in an artificial finger-shaped sensor with advanced sensing capabilities. Significantly, this fingertip contains high-resolution sensors (~8.3 million taxels) that respond to omnidirectional touch, capture multi-modal signals, and use on-device artificial intelligence to process the data in real time. Evaluations show that the artificial fingertip can resolve spatial features as small as 7 um, sense normal and shear forces with a resolution of 1.01 mN and 1.27 mN, respectively, perceive vibrations up to 10 kHz, sense heat, and even sense odor. Furthermore, it embeds an on-device AI neural network accelerator that acts as a peripheral nervous system on a robot and mimics the reflex arc found in humans. These results demonstrate the possibility of digitizing touch with superhuman performance. The implications are profound, and we anticipate potential applications in robotics (industrial, medical, agricultural, and consumer-level), virtual reality and telepresence, prosthetics, and e-commerce. Toward digitizing touch at scale, we open-source a modular platform to facilitate future research on the nature of touch.

📄 PDF Abstract BibTeX arXiv:2411.02479

Code (1)

facebookresearch/digit360 공식 구현

Tasks

ARC

Similar Papers 제목 키워드 기반

General In-Hand Object Rotation with Vision and Touch

2023-09-18 · Haozhi Qi, Brent Yi, Sudharshan Suresh, Mike Lambeta 외

We introduce RotateIt, a system that enables fingertip-based object rotation along multiple axes by leveraging multimodal sensory inputs. Our system is trained in simulation, where it has access to ground-truth object sh…

Object

PressureVision++: Estimating Fingertip Pressure from Diverse RGB Images

2023-01-05 · Patrick Grady, Jeremy A. Collins, Chengcheng Tang, Christopher D. Twigg 외

Touch plays a fundamental role in manipulation for humans; however, machine perception of contact and pressure typically requires invasive sensors. Recent research has shown that deep models can estimate hand pressure ba…

Mixed Reality

TactoFind: A Tactile Only System for Object Retrieval

2023-03-23 · Sameer Pai, Tao Chen, Megha Tippur, Edward Adelson 외

We study the problem of object retrieval in scenarios where visual sensing is absent, object shapes are unknown beforehand and objects can move freely, like grabbing objects out of a drawer. Successful solutions require …

ObjectRetrieval

Rotating without Seeing: Towards In-hand Dexterity through Touch

2023-03-20 · Zhao-Heng Yin, Binghao Huang, Yuzhe Qin, Qifeng Chen 외

Tactile information plays a critical role in human dexterity. It reveals useful contact information that may not be inferred directly from vision. In fact, humans can even perform in-hand dexterous manipulation without u…

Object

Presentation Attack Detection with Advanced CNN Models for Noncontact-based Fingerprint Systems

2023-03-09 · Sandip Purnapatra, Conor Miller-Lynch, Stephen Miner, Yu Liu 외

Touch-based fingerprint biometrics is one of the most popular biometric modalities with applications in several fields. Problems associated with touch-based techniques such as the presence of latent fingerprints and hygi…