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Detecting harmonic change in musical audio

机译:检测音乐音频中的谐波变化

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摘要

We propose a novel method for detecting changes in the harmonic content of musical audio signals. Our method uses a new model for Equal Tempered Pitch Class Space. This model maps 12-bin chroma vectors to the interior space of a 6-D polytope; pitch classes are mapped onto the vertices of this polytope. Close harmonic relations such as fifths and thirds appear as small Euclidian distances. We calculate the Euclidian distance between analysis frames n +1 and n -1 to develop a harmonic change measure for frame n. A peak in the detection function denotes a transition from one harmonically stable region to another. Initial experiments show that the algorithm can successfully detect harmonic changes such as chord boundaries in polyphonic audio recordings.
机译:我们提出了一种检测音乐音频信号谐波含量变化的新颖方法。我们的方法对等距音调类空间使用了新模型。该模型将12-bin色度矢量映射到6-D多表位的内部空间。音调类别映射到此多面体的顶点上。诸如五分之三和三分之二的紧密谐波关系以较小的欧几里得距离出现。我们计算分析帧 n +1和 n -1之间的欧几里得距离,以开发帧 n 的谐波变化量度。检测函数中的峰值表示从一个谐波稳定区域到另一个谐波稳定区域的过渡。初步实验表明,该算法可以成功检测出谐波变化,例如和弦录音中的和弦边界。

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