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Characterizing chaotic melodies in automatic music composition

机译:表征自动音乐创作中的混沌旋律

摘要

In this paper, we initially present an algorithm for automatic composition of melodies using chaotic dynamical systems. Afterward, we characterize chaotic music in a comprehensive way as comprising three perspectives: musical discrimination, dynamical influence on musical features, and musical perception. With respect to the first perspective, the coherence between generated chaotic melodies (continuous as well as discrete chaotic melodies) and a set of classical reference melodies is characterized by statistical descriptors and melodic measures. The significant differences among the three types of melodies are determined by discriminant analysis. Regarding the second perspective, the influence of dynamical features of chaotic attractors, e.g., Lyapunov exponent, Hurst coefficient, and correlation dimension, on melodic features is determined by canonical correlation analysis. The last perspective is related to perception of originality, complexity, and degree of melodiousness (Euler's gradus suavitatis) of chaotic and classical melodies by nonparametric statistical tests. (c) 2010 American Institute of Physics. [doi: 10.1063/1.3487516]
机译:在本文中,我们最初提出了一种使用混沌动力学系统自动合成旋律的算法。之后,我们以一种综合的方式将混沌音乐定性为三个视角:音乐辨别力,对音乐特征的动态影响和音乐感知。关于第一个观点,生成的混沌旋律(连续和离散混沌旋律)与一组经典参考旋律之间的相干性以统计描述符和旋律测度为特征。通过判别分析确定三种旋律之间的显着差异。关于第二种观点,通过典范相关分析确定了混沌吸引子的动力学特征,例如李雅普诺夫指数,赫斯特系数和相关维,对旋律特征的影响。最后一个观点与通过非参数统计检验对混沌旋律和古典旋律的独创性,复杂性和旋律程度(欧拉氏等级)有关。 (c)2010年美国物理研究所。 [doi:10.1063 / 1.3487516]

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