巴厘佳美兰的Ombak和八度伸展

IF 0.5 2区 数学 Q4 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Journal of Mathematics and Music Pub Date : 2020-09-20 DOI:10.1080/17459737.2020.1812128
W. Sethares, Wayne Vitale
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引用次数: 0

摘要

巴厘岛佳美兰演奏实践中的一个主要审美是ombak(印尼语为波浪),它体现在音乐形式、演奏和调音上。ombak产生于配对调音系统,其中两种乐器(或乐器组)的相应组合被调到稍微不同的频率,一个高一个低,以产生节拍。音高类不一定按照2:1的频率比例调到八度;相反,八度音阶经常被拉长或压缩。本文讨论了振速与倍频回火之间的关系,并证明了振速与所选择的倍频调整策略相结合,可以使用确定拉伸或压缩量的回火参数来建模。然后用该模型分析了九个佳美兰全集的调音数据。
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Ombak and octave stretching in Balinese gamelan
A primary esthetic in the performance practice of Balinese gamelan is the ombak (Indonesian for wave), which is manifest in musical form, performance, and tuning. The ombak arises in a paired tuning system in which corresponding unisons of two instruments (or instrumental groups) are tuned to slightly different frequencies, one higher and one lower, to produce beats. Pitch classes are not necessarily tuned to octaves in an exact 2:1 frequency ratio; instead, octaves are often stretched or compressed. This paper discusses the relationship between the ombak rate and octave tempering, and demonstrates that the beating rate, combined with the octave tuning strategy chosen, can be modeled using a tempering parameter that determines the amount of stretching or compression. This model is then used to analyze tuning data of nine complete gamelan.
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来源期刊
Journal of Mathematics and Music
Journal of Mathematics and Music 数学-数学跨学科应用
CiteScore
1.90
自引率
18.20%
发文量
18
审稿时长
>12 weeks
期刊介绍: Journal of Mathematics and Music aims to advance the use of mathematical modelling and computation in music theory. The Journal focuses on mathematical approaches to musical structures and processes, including mathematical investigations into music-theoretic or compositional issues as well as mathematically motivated analyses of musical works or performances. In consideration of the deep unsolved ontological and epistemological questions concerning knowledge about music, the Journal is open to a broad array of methodologies and topics, particularly those outside of established research fields such as acoustics, sound engineering, auditory perception, linguistics etc.
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