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ObjectFolder: A Dataset of Objects with Implicit Visual, Auditory, and Tactile Representations

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arxiv 2109.07991 v3 pith:KI6RXX2F submitted 2021-09-16 cs.RO cs.CVcs.GRcs.LG

classification cs.ROcs.CVcs.GRcs.LG
keywords objectsdatasetobjectobjectfoldermultisensorytactilevisualauditory
verification ladder T0 review T1 audit T2 compute T3 formal
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Multisensory object-centric perception, reasoning, and interaction have been a key research topic in recent years. However, the progress in these directions is limited by the small set of objects available -- synthetic objects are not realistic enough and are mostly centered around geometry, while real object datasets such as YCB are often practically challenging and unstable to acquire due to international shipping, inventory, and financial cost. We present ObjectFolder, a dataset of 100 virtualized objects that addresses both challenges with two key innovations. First, ObjectFolder encodes the visual, auditory, and tactile sensory data for all objects, enabling a number of multisensory object recognition tasks, beyond existing datasets that focus purely on object geometry. Second, ObjectFolder employs a uniform, object-centric, and implicit representation for each object's visual textures, acoustic simulations, and tactile readings, making the dataset flexible to use and easy to share. We demonstrate the usefulness of our dataset as a testbed for multisensory perception and control by evaluating it on a variety of benchmark tasks, including instance recognition, cross-sensory retrieval, 3D reconstruction, and robotic grasping.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Hearing Hands: Generating Sounds from Physical Interactions in 3D Scenes

    cs.CV 2025-06 conditional novelty 6.0 of 10

    A rectified flow model conditioned on 3D hand trajectories and rendered scene video generates realistic hand-scene interaction sounds, with a human study finding near-chance discrimination (47% misclassified).

  2. Tactile MNIST: Benchmarking Active Tactile Perception

    cs.RO 2025-06 conditional novelty 6.0 of 10

    The authors release a Gymnasium-compatible benchmark with four active tactile tasks, 13,580 3D digit models, and 153,600 real touches on 600 printed digits.

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