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SPECTROGRAM ANALYSIS OF ANIMAL SOUND PRODUCTION

机译:动物声音产生的光谱分析

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摘要

Spectrograms visualise the time-frequency content of a signal. They are commonly used to analyse animal vocalisations. Here, we analyse how far we can deduce the mechanical origin or sound generation and modulation from the spectrogram. We investigate the relationship between simple mathematical events such as transients, harmonies, amplitude and frequency modulation and the resulting structures in spectrograms. This approach yields not only convenient statistical description, but also aids in formulating hypotheses about the underlying mathematical mechanisms. We then discuss to what extent it is possible to invert our analysis and relate structures in spectrograms back to the underlying mathematical and mechanical events using two exemplary approaches: (a) we analyse the spectrogram of a vocalisation of the Bearded Vulture and postulate hypotheses an the mathematical origin of the signal. Furthermore, we synthesise the signal using the simple mathematical principles presented earlier; (b) we use a simple mechanical model to generate sounds and relate experimentally observed mechanical events to characteristics of the spectrogram. We conclude that although knowledge of sound producing systems increases the explanatory power of a spectrogram, a spectrogram per se cannot present unambiguous evidence about the underlying mechanical origin of the sound signal.
机译:频谱图可视化信号的时频内容。它们通常用于分析动物发声。在这里,我们分析了可以从声谱图中推断出机械起源或声音产生和调制的距离。我们研究了简单的数学事件(例如瞬变,和声,幅度和频率调制)与频谱图中的结构之间的关系。这种方法不仅可以方便地进行统计描述,而且可以帮助制定有关基本数学机制的假设。然后,我们讨论使用两种示例性方法在多大程度上可以反转我们的分析并将频谱图中的结构与基础的数学和机械事件相关联:(a)我们分析胡子秃voc发声的频谱图,并假设假设和信号的数学来源。此外,我们使用前面介绍的简单数学原理来合成信号。 (b)我们使用简单的机械模型来产生声音,并将实验观察到的机械事件与频谱图的特征相关联。我们得出的结论是,尽管对声音产生系统的了解增加了声谱图的解释能力,但声谱图本身不能提供有关声音信号的潜在机械起源的明确证据。

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