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The performance of methods based on the fractional Fourier transform for detecting marine mammal vocalizations

机译:基于分数阶傅里叶变换的海洋哺乳动物发声检测方法的性能

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摘要

The analysis of cetacean vocalizations is considered using Fourier-based techniques that employ chirp functions in their decomposition. In particular, the paper considers a short-time methods based on the fractional Fourier transform for detecting frequency modulated narrow-band signals, such as dolphin whistles, and compares this to the classical short-time Fourier methods. The fractional Fourier technique explored computes transforms associated with a range of chirp rates and automatically selects the rate for the final analysis. This avoids the need for prior knowledge of signal's chirp rate. An analysis is presented that details the performance of both methods as signal detectors and allows one to determine their detection thresholds. These thresholds are then used to measure the detectability of synthetic signals. This principle is then extended to measure performance on a set of recordings of narrow-band vocalizations from a range of cetacean species.
机译:鲸类动物发声的分析被认为是使用基于傅立叶的技术进行的,该技术在其分解过程中采用了线性调频函数。特别是,本文考虑了一种基于分数阶傅里叶变换的短时检测方法,以检测诸如海豚哨声等调频窄带信号,并将其与经典的短时傅里叶方法进行比较。探索的分数傅立叶技术可计算与一系列线性调频速率相关的变换,并自动选择速率以进行最终分析。这避免了对信号线性调频率的先验知识的需要。提出了一项分析,详细分析了这两种方法作为信号检测器的性能,并允许他们确定其检测阈值。然后将这些阈值用于测量合成信号的可检测性。然后将此原理扩展为在一系列鲸类物种的窄带发声记录集上测量演奏的性能。

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