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Quantifying Vocal Mimicry in the Greater Racket-Tailed Drongo: A Comparison of Automated Methods and Human Assessment

机译:量化大拍尾Drongo中的人声模仿:自动方法与人体评估的比较

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摘要

Objective identification and description of mimicked calls is a primary component of any study on avian vocal mimicry but few studies have adopted a quantitative approach. We used spectral feature representations commonly used in human speech analysis in combination with various distance metrics to distinguish between mimicked and non-mimicked calls of the greater racket-tailed drongo, Dicrurus paradiseus and cross-validated the results with human assessment of spectral similarity. We found that the automated method and human subjects performed similarly in terms of the overall number of correct matches of mimicked calls to putative model calls. However, the two methods also misclassified different subsets of calls and we achieved a maximum accuracy of ninety five per cent only when we combined the results of both the methods. This study is the first to use Mel-frequency Cepstral Coefficients and Relative Spectral Amplitude - filtered Linear Predictive Coding coefficients to quantify vocal mimicry. Our findings also suggest that in spite of several advances in automated methods of song analysis, corresponding cross-validation by humans remains essential.
机译:客观识别和模仿呼叫的描述是任何关于禽声模仿的研究的主要内容,但是很少有研究采用定量方法。我们将人类语音分析中常用的频谱特征表示法与各种距离度量结合使用,以区分较大球尾燕尾龙,Dicrurus paradiseus的模仿和非模仿呼叫,并通过人类对频谱相似性的评估对结果进行交叉验证。我们发现,在模仿的电话与假定的模型电话的正确匹配总数上,自动方法和人类受试者的表现相似。但是,这两种方法也会对呼叫的不同子集进行错误分类,只有将两种方法的结果结合起来,我们才能达到95%的最大准确性。这项研究是首次使用梅尔频率倒谱系数和相对频谱幅度滤波的线性预测编码系数来量化人声模仿。我们的发现还表明,尽管歌曲分析的自动化方法取得了一些进步,但人类进行相应的交叉验证仍然至关重要。

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