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Up close and personal: recording humpback whale song at close ranges (10-50m)

机译:近距离私人拍摄:在近距离(10-50m)记录座头鲸的歌声

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Summary form only given. Male humpback whales (Megaptera novaeangliae) produce long, complex vocalizations consisting of a hierarchically-structured sequence of distinctive broadband 'units', each of a few seconds' duration. The function of this 'song' remains unclear. Singers are often observed in a stationary position with their body inclined downwards while vocalizing for about 10-12 minutes. The posture is suggestive of the singer attempting to optimize song propagation, but without calibrated measurements of the sound speed profile, source characteristics, range and orientation to the singer at close range, such ideas are difficult to test. Previous recordings have been made at considerable distance, where absorption, multipath and other propagation effects are imposed on the signal and the orientation to the singer is unknown. Prior recordings are also usually of low bandwidth. Recent work, however, has suggested that, close to the singer, song units may contain significant energy up to 20 kHz. The Acoustic Research Laboratory, Tropical Marine Science Institute at the National University of Singapore in collaboration with the Kewalo Basin Marine Mammal Laboratory of the University of Hawaii have deployed two types of acoustic recording systems in close proximity to singers in addition to CTD casts taken by the US Geological Survey. The first acoustic system is a digital video camera in an underwater housing with built-in hydrophone, recording at 44.1 kSa/s and operated by rebreather divers who are able to simultaneously ascertain both orientation and range to the singer using an ultrasonic depthsounder. The second is a custom-built self-contained high-frequency system with four hydrophones in an array that recorded at 250 kSa/s per channel. Both systems provide extremely high signal-to-noise ratio (typically 60 dB) calibrated recordings without propagation artifacts. Individual song units have been analyzed for power spectral density. Results indicate that most of the energy is located below 5 kHz with occasional harmonics up to 8 kHz. Individual units from a 6-minute sequence of 134 units were classified into 12 types with four classes containing 80% of the units. Comparisons of the power spectral densities within and across the four most common classes were conducted. Variations within classes were found to be within 7 dB when normalized for total power. Differences between the classes were small (up to 5dB) in the range of 500-1800 Hz and larger (up to 14dB) in the range from 1800-3500 Hz. The high-frequency recording system provides independent verification within the overlapping frequency range of both systems as well as information about the frequency content above 22 kHz up to 120 kHz.
机译:仅提供摘要表格。雄性座头鲸(Megaptera novaeangliae)会产生长而复杂的发声,其中包括独特的宽带“单元”的层次结构序列,每个持续时间为几秒钟。该“歌曲”的功能尚不清楚。歌手通常在静止的位置观察,他们的身体向下倾斜,同时发声约10-12分钟。姿势暗示着歌手正在尝试优化歌曲的传播,但是如果没有在近距离上对歌手的声速曲线,音源特性,范围和方向进行校准测量,这种想法就很难测试。以前的录音是在相当远的距离上进行的,其中吸收,多径和其他传播效应都施加在信号上,而指向歌手的方向是未知的。先前的记录通常也具有低带宽。然而,最近的工作表明,靠近歌手的歌曲单元可能包含高达20 kHz的大量能量。新加坡国立大学热带海洋科学研究所的声学研究实验室与夏威夷大学的Kewalo盆地海洋哺乳动物实验室合作,除了由歌手拍摄的CTD演员外,还在歌手附近部署了两种类型的声音记录系统。美国地质调查局。第一个音响系统是在水下外壳中的数字摄像机,该摄像机带有内置水听器,以44.1 kSa / s的速度记录下来,并由循环呼吸器潜水员操作,后者可以使用超声波测深仪同时确定歌手的方位和范围。第二个是定制的自成体系的高频系统,其阵列中有四个水听器,每个通道的录音速度为250 kSa / s。两种系统都提供了极高的信噪比(通常为60 dB)的校准记录,而没有传播伪像。已对单个歌曲单元的功率谱密度进行了分析。结果表明,大多数能量位于5 kHz以下,偶有谐波高达8 kHz。将134个单元的6分钟序列中的各个单元划分为12种类型,其中四类包含80%的单元。进行了四个最常见类别之内和之间的功率谱密度比较。当对总功率进行归一化时,发现类别内的变化在7 dB以内。类别之间的差异在500-1800 Hz的范围内很小(最高5dB),而在1800-3500 Hz的范围内更大(最高14dB)。高频记录系统可在两个系统的重叠频率范围内提供独立的验证,以及有关22 kHz至120 kHz以上频率内容的信息。

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