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Paper · arXiv 2402.13232

A Touch, Vision, and Language Dataset for Multimodal Alignment

Letian Fu, Gaurav Datta, Huang Huang, William Chung-Ho Panitch, Jaimyn Drake, Joseph Ortiz, Mustafa Mukadam, Mike Lambeta, Roberto Calandra, Ken Goldberg

17 upvotesFebruary 20, 2024arXiv 预印本
AI 摘要

The study presents a new dataset and multimodal model that integrates touch, vision, and language, showing improvements in touch-vision-language alignment and visual-tactile understanding.

multimodal generative language modeltactile datavision-touch pairsEnglish language labelsGPT-4Vtextual pseudo-labelsvision-language-aligned tactile encodertouch-vision-language modeltext generationopen-vocabulary classificationtouch-vision understanding benchmark

Abstract

Touch is an important sensing modality for humans, but it has not yet been incorporated into a multimodal generative language model. This is partially due to the difficulty of obtaining natural language labels for tactile data and the complexity of aligning tactile readings with both visual observations and language descriptions. As a step towards bridging that gap, this work introduces a new dataset of 44K in-the-wild vision-touch pairs, with English language labels annotated by humans (10%) and textual pseudo-labels from GPT-4V (90%). We use this dataset to train a vision-language-aligned tactile encoder for open-vocabulary classification and a touch-vision-language (TVL) model for text generation using the trained encoder. Results suggest that by incorporating touch, the TVL model improves (+29% classification accuracy) touch-vision-language alignment over existing models trained on any pair of those modalities. Although only a small fraction of the dataset is human-labeled, the TVL model demonstrates improved visual-tactile understanding over GPT-4V (+12%) and open-source vision-language models (+32%) on a new touch-vision understanding benchmark. Code and data: https://tactile-vlm.github.io.

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