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大西洋宽吻海豚(Tursiops truncatus)周围的生物声纳场。

The biosonar field around an Atlantic bottlenose dolphin (Tursiops truncatus).

机构信息

Marine Mammal Research Program, Hawaii Institute of Marine Biology, PO Box 1106, Kailua, Hawaii 96734, USA.

出版信息

J Acoust Soc Am. 2012 Jan;131(1):569-76. doi: 10.1121/1.3662077.

Abstract

The use of remote autonomous passive acoustic recorders (PAR) to determine the distribution of dolphins at a given locations has become very popular. Some investigators are using echolocation clicks to gather information on the presence of dolphins and to identify species. However, in all of these cases, the PAR probably recorded mainly off-axis clicks, even some from behind the animals. Yet there is a very poor understanding of the beam pattern and the click waveform and spectrum from different azimuths around the animal's body. The beam pattern completely around an echo locating dolphin was measured at 16 different but equally spaced angles in the horizontal plane using an 8-hydrophone array in sequence. Eight channels of data were digitized simultaneously at a sampling rate of 500 kHz. The resulting beam patterns in both planes showed a continuous drop off in sound pressure with azimuth around the animal and reached levels below -50 dB relative to the signal recorded on the beam axis. The signals began to break up into two components at angles greater than ± 45° in the horizontal plane. The center frequency dropped off from its maximum at 0° in a non-uniform matter.

摘要

使用远程自主被动声学记录器 (PAR) 来确定特定地点海豚的分布已变得非常流行。一些研究人员正在使用回声定位点击来收集有关海豚存在的信息并识别物种。然而,在所有这些情况下,PAR 可能主要记录了离轴点击,甚至有些是来自动物后面。但是,对于来自动物身体周围不同方位的波束模式和点击波形和频谱,人们的了解非常有限。使用一个 8 个水听器的阵列,在水平面的 16 个不同但等距的角度上,以 500 kHz 的采样率连续测量了回声定位海豚的完整波束模式。同时对 8 个通道的数据进行数字化处理。在动物周围的方位上,声压随着方位的连续下降,在水平面上的角度大于±45°时,信号开始分解成两个分量。中心频率从 0°的最大值以非均匀的方式下降。

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