Sound synthesis process as underpinnigs for the composition of Rito Soturno
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Keywords

Eletroacoustic composition
Sound synthesis
Caotic models

How to Cite

MONTEIRO, Adriano Claro; MANZOLLI, Jônatas. Sound synthesis process as underpinnigs for the composition of Rito Soturno. NICS Reports, Campinas, SP, v. 3, n. 7, p. 1–10, 2014. Disponível em: https://econtents.bc.unicamp.br/pas/index.php/nicsreports/article/view/63. Acesso em: 3 jul. 2024.

Abstract

This article presents a new method for synthesis of sound textures that was developed to the composition of Rito soturno, an electroacustic music piece. The proposed method is based on non-linear dynamical systems and can be classified as a new approach in the field of Iterative Synthesis. In the article we fist describe the system, then we discuss its application to musical composition, and finally
we show results achieved through empirical experimentation.

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References

BIDLACK, Rick. Chaotic Systems as Simple (But Complex) Compositional Algorithms. Computer Music Journal, v. 16, n. 3, p. 33-47 1992.

CHAPEL, Rubén H. Realtime Algorithmic Music Systems from Fractals and Chaotic Functions: toward an active musical instrument.Barcelona, 2003. 75f. Dissertação (submetida ao exame parcial para aquisição de Doutorado) Universitat Pompeu Fabra.

DABBY, Diana. Musical Variations from a Chaotic Mapping. Cambridge, 1995. 162f. Tese (Doutorado em Engenharia Elétrica e Ciência da Computação), Massachusetts Institute of Technology.

DI SCIPIO, Agostino. Composition by Exploration of Non-linear Dynamics Systems. In: INTERNATIONAL COMPUTER MUSIC CONFERENCE, 1990, Glasgow. Escócia. ICMC Glasgow Proceedings, International Computer Music Association, 1990, p. 324-328.

DI SCIPIO, Agostino; PRIGNANO, Ignazio. Synthesis by Functional Iterations. A Revitalization of Non-Standard Synthesis. Journal of New Music Research, v. 25, n. 1, p. 31- 46, 1996.

DIAZ-JEREZ, Gustavo. Algorithmic Music: using mathematical models in music composition. Nova York, 2000. 284f. Dissertação (submetida ao exame parcial para requerimentos em Doutorado em Música). Manhattan School of Music.

DODGE, Charles. Profile a musical fractal. Computer Music Journal,v.12, n. 3, p.10-14, 1988.

FORREST, Stephanie. Emergent Computation: Self-Organizing, Collective, and Cooperative Computing Networks, Cambridge, MA,MIT Press, 1990.

GOGINS, Michael. Iterated Functions Systems Music. Computer Music Journal, v. 15, n.1, p. 40-48, 1991.

MANZOLLI, Jônatas Musical Application Derived from FracWave Sound Synthesis Method. In: AUDIO ENGINEERING SOCIETY CONVENTION, 94, Berlim, 1993, 94th AES Proceedings, Berlim: Audio Engineering Society, 1993.

PETERS, Michael. From Strange to Impossible Interactive Attractor Music. Contemporary Music Review, v. 29, n. 4, p- 395-404, 2010.

PRESSING, Jeff. Nonlinear maps as generators of musical design.Computer Music Journal, v. 12, n. 2, p. 35-46, 1988.

PUIG, Daniel.Música e sistemas dinâmicos não-lineares: uma abordagem composicional. Rio de Janeiro, 2005. 113f. Dissertação de Mestrado em Música, Universidade Federal do Rio de Janeiro.

SLATER, Dan. Chaotic Sound Synthesis. Computer Music Journal, v. 22, n. 2, p. 12-19, 1998.

TRUAX, Barry. Chaotic Non-linear Systems and Digital Synthesis: an exploratory study. In:

INTERNATIONAL COMPUTER MUSIC CONFERENCE, 1990. Glasgow, ICMC Glasgow Proceedings: International Computer Music Association,1990, p. 100-103.

VALSAMAKIS, Nikolas; MIRANDA, Eduardo Reck. Interactive Sound Synthesis by means of cross-coupled digital oscillators. Digital Creativity, v. 16, n. 2, p. 79-92, 2005.

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