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Automatic Detection of Reactions to Music via Earable Sensing

The Arts

Automatic Detection of Reactions to Music via Earable Sensing

C. M. Lee, J. Lee, et al.

Discover GrooveMeter, an innovative system that utilizes earable sensing technology to automatically detect vocal and motion responses to music. This remarkable research, conducted by Chulhong Mineuihyeok Lee, Jaeseung Lee, Jin Yu, and Seungwoo Kang, showcases impressive accuracy and offers potential applications ranging from automatic music ratings to music therapy tools.

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~3 min • Beginner • English
Abstract
We present GrooveMeter, a novel system that automatically detects vocal and motion reactions to music via earable sensing and supports music engagement-aware applications. We use smart earbuds as sensing devices and devise reaction detection techniques leveraging an IMU and a microphone on earbuds. To explore reactions in daily music-listening situations, we collect MusicReactionSet, containing 926 minutes of IMU and audio data with 30 participants. We identify unique challenges in detecting reactions accurately and robustly using audio and motion sensing (e.g., reaction-irrelevant events, background noise and motion artifacts, and mobile processing cost) and design processing pipelines to make reaction detection accurate and efficient. Comprehensive evaluation shows GrooveMeter achieves macro F1 scores of 0.89 for vocal reaction and 0.81 for motion reaction with leave-one-subject-out cross-validation, outperforming alternatives in accuracy and robustness, especially in noisy situations (e.g., cafe). A filtering approach reduces energy overhead by 50% or more. We also demonstrate potential applications through a case study including automatic music rating, familiarity detection, and reaction-based music recommendation.
Publisher
Not specified in the provided text
Published On
Jan 01, 2023
Authors
CHULHONG MINEuihyeok Lee, JAESEUNG LEE, JIN YU, SEUNGWOO KANG
Tags
earable sensing
vocal reactions
motion reactions
music therapy
dataset
accuracy
real-time processing
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