An Electronic Bandoneon with a Dynamic Sound Synthesis System Based on Measured Acoustic Parameters

Author:

Ramos Juan1,Calcagno Esteban2,Vergara Ramiro3,Rizza Joaquín4,Riera Pablo5

Affiliation:

1. Laboratorio de Acústica y Percepción Sonora Escuela Universitaria de Artes Universidad Nacional de Quilmes Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina juan.ramos@unq.edu.ar

2. Laboratorio de Acústica y Percepción Sonora Escuela Universitaria de Artes Universidad Nacional de Quilmes Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina ecalcagno@unq.edu.ar

3. Laboratorio de Acústica y Percepción Sonora Escuela Universitaria de Artes Universidad Nacional de Quilmes Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina ramiro.vergara@unq.edu.ar

4. Laboratorio de Acústica y Percepción Sonora Escuela Universitaria de Artes Universidad Nacional de Quilmes Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina joaquin-rizza@hotmail.com

5. Laboratorio de Inteligencia Artificial Aplicada Instituto de Ciencias de la Computación Universidad de Buenos Aires Ciudad Universitaria, Buenos Aires, Argentina priera@dc.uba.ar

Abstract

Abstract The bandoneon is a distinctive free-reed instrument with profound ties to tango culture and Latin American music. The scarcity of manufacturers and the related high retail prices, however, are restricting access to the instrument for new generations of musicians. By combining modern technologies and scientific research, the Bandoneon 2.0 project aims to create an expressive and accessible new version of the instrument. In this article, we present an electronic bandoneon with a custom sound synthesis system. We also present an acoustic measurement system with which we analyzed the sound and air pressure signals of an acoustic bandoneon. Through this, we characterized several sound attributes that are utilized in a synthesis model made in Faust DSP. Combining the controller interface and the custom synthesizer, the electronic bandoneon we created can achieve a good level of expressiveness and engagement for the performer. We aim to produce an instrument that can be used in recreational, academic, and professional contexts to address the current sociocultural demand.

Publisher

MIT Press

Subject

Computer Science Applications,Music,Media Technology

Reference24 articles.

1. Bandonberry: Simulador electrónico de bandoneón;Bentancour,2019

2. Studies of Accordion Reed Vibrations: Applications in Sound Synthesis;Caussé;Journal of the Acoustical Society of America,1999

3. Acoustics of American Reed Organs;Cottingham;Journal of the Acoustical Society of America,1996

4. Pitch Bending and Multiple-Mode Reed Vibration in Mechanically-Blown Free Reed Instruments;Cottingham;Proceedings of the International Symposium on Music Acoustics (Associated Meeting of the International Congress on Acoustics),2010

5. The Life and Times of the Concertina: The Adoption and Usages of a Novel Musical Instrument with Particular Reference to Scotland;Eydmann,1996

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