
Modern music producers commonly use MIDI (Musical Instrument Digital Interface) to store their musical compositions. However, MIDI files created with digital software may lack the expressive characteristics of human performances, essentially leaving the velocity parameter - a control for note loudness - undefined, which defaults to a flat value. The task of filling MIDI velocity is termed MIDI velocity prediction, which uses regression models to enhance music expressiveness by adjusting only this parameter. In this paper, we introduce the U-Net, a widely adopted architecture in image colorization, to this task. By conceptualizing MIDI data as images, we adopt window attention and develop a custom loss function to address the sparsity of MIDI-converted images. Current dataset availability restricts our experiments to piano data. Evaluated on the MAESTRO v3 and SMD datasets, our proposed method for filling MIDI velocity outperforms previous approaches in both quantitative metrics and qualitative listening tests.
accepted to CMMR2025 conference
FOS: Computer and information sciences, Sound (cs.SD), Sound, Audio and Speech Processing (eess.AS), Image colorization, FOS: Electrical engineering, electronic engineering, information engineering, MIDI velocity prediction, Music expressiveness, U-Net, Audio and Speech Processing
FOS: Computer and information sciences, Sound (cs.SD), Sound, Audio and Speech Processing (eess.AS), Image colorization, FOS: Electrical engineering, electronic engineering, information engineering, MIDI velocity prediction, Music expressiveness, U-Net, Audio and Speech Processing
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