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首页> 外文期刊>The Journal of the Acoustical Society of America >Dynamics of biosonar signals in free-swimming and stationary dolphins: The role of source levels on the characteristics of the signals
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Dynamics of biosonar signals in free-swimming and stationary dolphins: The role of source levels on the characteristics of the signals

机译:自由游动和固定海豚中生物声纳信号的动力学:信号源水平对信号特征的作用

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摘要

The biosonar signals of two free-swimming Atlantic bottlenose dolphins performing a complex sonar search for a bottom target in San Diego Bay were compared with the biosonar signals of a dolphin performing a target discrimination task in a net pen in the same bay. A bite-plate device carried by the free-swimming dolphins supported a hydrophone that extended directly in front of the dolphin. A biosonar measuring tool attached to the bite plate measured the outgoing biosonar signals while the dolphins conducted sonar searches. Each of the free-swimming dolphins used different biosonar search strategy in solving the problem and the dolphins' biosonar signals reflect the difference in strategy. The dolphin in the pen stationed in a hoop while echolocating on a target 6 m away and reported if the indentation on a spherical target was directed toward it. The signals were parameterized by determining the peak-to-peak source levels, source energy flux density, peak frequency, center frequency, root-mean-square (rms) bandwidth, rms duration, and the Q of the signals. Some parameters were similar for the free-swimming and stationary dolphins while some were significantly different, suggesting biosonar signals used by free-swimming animals may be different than signals used by dolphins in a pen. (C) 2016 Acoustical Society of America.
机译:将两只自由游动的大西洋宽吻海豚在圣迭戈湾进行复杂声纳搜索以寻找底部目标的生物声纳信号与海豚在同一海湾的网围中执行目标识别任务的生物声纳信号进行了比较。自由游动的海豚携带的咬板装置支撑了直接在海豚前延伸的水听器。当海豚进行声纳搜索时,连接到咬板的生物声波测量工具测量了传出的生物声波信号。每个自由游动的海豚在解决问题时都使用了不同的生物声纳搜索策略,并且海豚的生物声纳信号反映了策略上的差异。笔中的海豚在回声中定位在距离目标6 m的目标上时围成一圈,并报告球形目标上的压痕是否指向该目标。通过确定峰峰值源电平,源能量通量密度,峰值频率,中心频率,均方根(rms)带宽,均方根持续时间和信号Q来对信号进行参数化。对于自由游动的海豚和静止的海豚,一些参数是相似的,而有些参数则明显不同,这表明自由游动的动物使用的生物声纳信号可能与笔中的海豚使用的信号不同。 (C)2016年美国声学学会。

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