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Automatic discrimination of underwater acoustic signals generated by teleseismic P-waves: A probabilistic approach

机译:自动识别远震P波产生的水下声信号:一种概率方法

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We propose a new probabilistic scheme for the automatic recognition of underwater acoustic signals generated by teleseismic P-waves recorded by hydrophones in the ocean. The recognition of a given signal is based on the relative distribution of its power among different frequency bands. The signal's power distribution is compared with a statistical model developed by analyzing relative power distributions of many signals of the same origin and a numerical criterion is calculated, which can serve as a measure of the probability for the signal to belong to the statistical model. Our recognition scheme was applied to 6-month-long continuous records of seven ocean bottom hydrophones (OBH) deployed in the Ligurian Sea. A maximum of 94% of all detectable teleseismic P-waves recorded during the deployment of the OBHs were recognized correctly with no false recognitions. The proposed recognition method will be implemented in autonomous underwater robots dedicated to detect and transmit acoustic signals generated by teleseismic P-waves.
机译:我们提出了一种新的概率方案,用于自动识别海洋中水听器记录的远震P波产生的水下声信号。给定信号的识别基于其功率在不同频段之间的相对分布。将信号的功率分布与通过分析同一来源的许多信号的相对功率分布而开发的统计模型进行比较,并计算出数值标准,该标准可以用作信号属于统计模型的概率的度量。我们的识别方案已应用于部署在利古里亚海中的七个海底水听器(OBH)的为期六个月的连续记录。在OBH部署期间记录的所有可检测的远震P波中,最多有94%被正确识别,没有错误识别。提出的识别方法将在专用于检测和传输由远震P波产生的声波信号的水下机器人中实现。

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