首页> 外文会议>European Signal Processing Conference(EUSIPCO 2005); 20050904-08; Antalya(TK) >MODELING MUSICAL SOUNDS WITH AN INTERPOLATING STATE MODEL
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MODELING MUSICAL SOUNDS WITH AN INTERPOLATING STATE MODEL

机译:使用插值状态模型对音乐声音进行建模

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摘要

A computationally effi cient algorithm is proposed for modeling and coding the time-varying spectra of musical sounds. The aim is to encode individual data sets and not the statistical properties of the sounds. A given sequence of acoustic feature vectors is modeled by fi nding such a set of "states" (anchor points in the feature space) that the input data can be effi ciently represented by interpolating between them. The achieved modeling accuracy for a database of musical sounds was approximately two times better than that of a conventional "vector quantization" model where the input data was k-means clustered and the input data vectors were then replaced by their corresponding cluster centroids. The computational complexity of the proposed algorithm as a function of the input sequence length T is 0(T log T).
机译:提出了一种计算有效的算法,用于对音乐声音的时变频谱进行建模和编码。目的是对单个数据集进行编码,而不是对声音的统计属性进行编码。通过找到这样的一组“状态”(特征空间中的锚点)来建模给定的声学特征矢量序列,从而可以通过在它们之间进行插值来有效地表示输入数据。音乐声音数据库的建模精度大约是传统的“矢量量化”模型的两倍,在传统的“矢量量化”模型中,将输入数据进行k均值聚类,然后将输入数据矢量替换为其相应的聚类质心。所提出的算法作为输入序列长度T的函数的计算复杂度为0(T log T)。

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