Algorithmic music generation by harmony recombination with genetic algorithm.

Publication date

2022-03-31

Authors

Lopez-Rincon, Omar
Starostenko, Oleg
Rincon, Alejandro LopezISNI 0000000440268079

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Algorithmic music composition has recently become an area of prestigious research in projects such as Google’s Magenta, Aiva, and Sony’s CSL Lab aiming to increase the composers’ tools for creativity. There are advances in systems for music feature extraction and generation of harmonies with short-time and long-time patterns of music style, genre, and motif. However, there are still challenges in the creation of poly-instrumental and polyphonic music, pieces become repetitive and sometimes these systems copy the original files. The main contribution of this paper is related to the improvement of generating new non-plagiary harmonic developments constructed from the symbolic abstraction from MIDI music non-labeled data with controlled selection of rhythmic features based on evolutionary techniques. Particularly, a novel approach for generating new music compositions by replacing existing harmony descriptors in a MIDI file with new harmonic features from another MIDI file selected by a genetic algorithm. This allows combining newly created harmony with a rhythm of another composition guaranteeing the adjustment of a new music piece to a distinctive genre with regularity and consistency. The performance of the proposed approach has been assessed using artificial intelligent computational tests, which assure goodness of the extracted features and shows its quality and competitiveness.

Keywords

Automatic music composition, music feature extraction and encoding, genetic algorithm, harmony recombination, Taverne

Citation

Lopez-Rincon, O, Starostenko, O & Rincon, A L 2022, 'Algorithmic music generation by harmony recombination with genetic algorithm.', Journal of Intelligent and Fuzzy Systems, vol. 42, no. 5, pp. 4411-4423. https://doi.org/10.3233/JIFS-219231