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AFF-ttention! Affordances and Attention models for Short-Term Object Interaction Anticipation

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arxiv 2406.01194 v2 pith:5FRCETC7 submitted 2024-06-03 cs.CV

classification cs.CV
keywords interactionpredictionsaffordancesnovelanticipationattentionego4dhuman
verification ladder T0 review T1 audit T2 compute T3 formal
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Short-Term object-interaction Anticipation consists of detecting the location of the next-active objects, the noun and verb categories of the interaction, and the time to contact from the observation of egocentric video. This ability is fundamental for wearable assistants or human robot interaction to understand the user goals, but there is still room for improvement to perform STA in a precise and reliable way. In this work, we improve the performance of STA predictions with two contributions: 1. We propose STAformer, a novel attention-based architecture integrating frame guided temporal pooling, dual image-video attention, and multiscale feature fusion to support STA predictions from an image-input video pair. 2. We introduce two novel modules to ground STA predictions on human behavior by modeling affordances.First, we integrate an environment affordance model which acts as a persistent memory of interactions that can take place in a given physical scene. Second, we predict interaction hotspots from the observation of hands and object trajectories, increasing confidence in STA predictions localized around the hotspot. Our results show significant relative Overall Top-5 mAP improvements of up to +45% on Ego4D and +42% on a novel set of curated EPIC-Kitchens STA labels. We will release the code, annotations, and pre extracted affordances on Ego4D and EPIC- Kitchens to encourage future research in this area.

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Cited by 1 Pith paper

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  1. FIction: 4D Future Interaction Prediction from Video

    cs.CV 2024-12 conditional novelty 6.0 of 10

    FICTION predicts future 3D interaction locations and body poses up to three minutes ahead from egocentric video and a 3D scene map, and claims substantial gains over prior methods on a new Ego-Exo4D benchmark.

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