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A Computational Model of Music Composition.

机译:音乐作品的计算模型。

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摘要

This thesis documents my research into formalized score control, in order to demonstrate a computational model of music composition. When working computationally, models provide an explicit formal description of what objects exist within a given domain, how they behave, and what transformations they afford. The clearer the model becomes, the easier it is to extend and to construct increasingly higher-order abstractions around that model. In other words, a clear computational model of music notation affords the development of a clear model of music composition. The Abjad API for Formalized Score Control, an open-source software library written in the Python programming language and making use of the LilyPond automated typesetting system for graphical output, is presented as such a computational model of music notation. My own compositional modeling work, extending Abjad, is introduced and analyzed in the Python library Consort. A collection of five scores, each implemented as Python packages extending these software libraries, are included. Three of these scores, "Zaira," "Armilla" and "Ersilia," rely on Consort as their compositional engine, and are presented along with their complete sources. These scores demonstrate my development as a composer investigating the role of computation in music, and display a variety of large-scale structures and musical textures made possible when working with such modeling tools.
机译:本文证明了我对形式化乐谱控制的研究,以证明音乐创作的计算模型。在进行计算工作时,模型提供了对给定域内存在哪些对象,它们的行为方式以及它们提供的转换的明确形式描述。模型变得越清晰,就越容易扩展并围绕该模型构造越来越高级的抽象。换句话说,清晰的音乐符号计算模型为清晰的音乐创作模型提供了发展。作为一种音乐符号的计算模型,提出了用于形式化乐谱控制的Abjad API,这是一个用Python编程语言编写的开源软件库,并利用LilyPond自动排版系统进行图形输出。我自己的构图建模工作(扩展了Abjad)在Python库Consort中进行了介绍和分析。包括五个分数的集合,每个分数都是通过扩展这些软件库的Python软件包实现的。其中的三个分数“ Zaira”,“ Armilla”和“ Ersilia”依靠Consort作为其构成引擎,并随其完整资料一起提供。这些成绩证明了我作为作曲家的发展,研究音乐在音乐中的作用,并显示了使用此类建模工具时可能实现的各种大型结构和音乐纹理。

著录项

  • 作者

    Oberholtzer, Josiah Wolf.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Music.;Computer science.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 1007 p.
  • 总页数 1007
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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