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首页> 外文期刊>IEEE Transactions on Signal Processing >Harmonic decomposition of audio signals with matching pursuit
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Harmonic decomposition of audio signals with matching pursuit

机译:匹配追踪的音频信号谐波分解

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We introduce a dictionary of elementary waveforms, called harmonic atoms, that extends the Gabor dictionary and fits well the natural harmonic structures of audio signals. By modifying the "standard" matching pursuit, we define a new pursuit along with a fast algorithm, namely, the fast harmonic matching pursuit, to approximate N-dimensional audio signals with a linear combination of M harmonic atoms. Our algorithm has a computational complexity of O(MKN), where K is the number of partials in a given harmonic atom. The decomposition method is demonstrated on musical recordings, and we describe a simple note detection algorithm that shows how one could use a harmonic matching pursuit to detect notes even in difficult situations, e.g., very different note durations, lots of reverberation, and overlapping notes.
机译:我们引入了一个称为谐波原子的基本波形字典,该字典扩展了Gabor字典并很好地拟合了音频信号的自然谐波结构。通过修改“标准”匹配追踪,我们定义了一个新的追踪以及快速算法,即快速谐波匹配追踪,以近似线性地结合了M个谐波原子的N维音频信号。我们的算法的计算复杂度为O(MKN),其中K是给定谐波原子中的部分数。分解方法在音乐录音中得到了证明,并且我们描述了一种简单的音符检测算法,该算法显示了即使在困难的情况下,例如音符持续时间非常不同,大量的混响和重叠的音符,也可以使用谐波匹配追踪来检测音符。

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