Abstract
Robotic piano playing has emerged as a standard benchmark for dexterous bimanual manipulation, yet progress on it has been measured almost entirely by note accuracy -- which keys are pressed (pitch) and when (onset) -- leaving the musical dynamics essential for expressive performance neither rewarded nor evaluated. We propose CANTABILE, a dynamics-aware framework for robotic piano performance that (i) closes the score-to-contact loop by conditioning the policy on upcoming velocity goals and mapping each key's angular velocity at onset back to MIDI velocity, (ii) couples a velocity-fidelity reward with an onset-coverage reward, so that dynamics cannot be improved by omitting difficult notes, and (iii) refines a frozen dynamics-aware base policy with an alpha-scaled, finger-only residual that localizes strike-intensity adaptation away from nominal note execution. On EXPRESSIVE-51, a dynamics-rich 51-song subset of RoboPianist, CANTABILE raises Velocity F1 -- jointly measuring pitch, onset, and intensity within a +/-8 MIDI-velocity tolerance -- from 0.06 to 0.34 over the RoboPianist baseline, improves all 51 songs, more than halves matched-note velocity error, and reduces log-mel distance to reference audio by 8%. Intensity-randomized training further enables runtime control of performance intensity without retraining.
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Cite this article
APA 7
Kim, W., Choi, W., & Im, S. (2026). CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance. https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance
MLA 9
Kim, Woosik, et al. "CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance." https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance.
Chicago (author–date)
Kim, Woosik, Wonhyeok Choi, and Sunghoon Im. 2026. "CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance." https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance.
Harvard
Kim, W., Choi, W. and Im, S. (2026) 'CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance', Available at: https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance.
Vancouver
Kim W, Choi W, Im S. CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance. https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance
IEEE
W. Kim, W. Choi, and S. Im, "CANTABILE: Learning Expressive Dynamics for Robotic Piano Performance," https://omanscience.com/en/articles/cantabile-learning-expressive-dynamics-for-robotic-piano-performance.