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Grounding Emotional Descriptions to Electrovibration Haptic Signals

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arxiv 2411.02118 v1 pith:3ZCMBN6C submitted 2024-11-04 cs.HC cs.CL

classification cs.HCcs.CL
keywords hapticemotionalsignalslanguagesensoryuserclusterscomputational
verification ladder T0 review T1 audit T2 compute T3 formal
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Designing and displaying haptic signals with sensory and emotional attributes can improve the user experience in various applications. Free-form user language provides rich sensory and emotional information for haptic design (e.g., ``This signal feels smooth and exciting''), but little work exists on linking user descriptions to haptic signals (i.e., language grounding). To address this gap, we conducted a study where 12 users described the feel of 32 signals perceived on a surface haptics (i.e., electrovibration) display. We developed a computational pipeline using natural language processing (NLP) techniques, such as GPT-3.5 Turbo and word embedding methods, to extract sensory and emotional keywords and group them into semantic clusters (i.e., concepts). We linked the keyword clusters to haptic signal features (e.g., pulse count) using correlation analysis. The proposed pipeline demonstrates the viability of a computational approach to analyzing haptic experiences. We discuss our future plans for creating a predictive model of haptic experience.

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

  1. HapticCap: A Multimodal Dataset and Task for Understanding User Experience of Vibration Haptic Signals

    cs.CL 2025-07 conditional novelty 6.0 of 10

    HapticCap is the first large human-annotated vibration-caption dataset, and a contrastive retrieval model using T5 and AST achieves the best caption-matching performance among the tested baselines.

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