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Real-time Passive Acoustic 3D Tracking of Deep Diving Cetacean by Small Non-uniform Mobile Surface Antenna

机译:小型非均匀移动表面天线对深海鲸类动物的实时无源声学3D跟踪

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Detecting and localizing the echolocation clicks of sperm whales provides insight into their diving behavior, but existing methods are limited in range, imprecise, or costly. In this work, we demonstrate that we can obtain a high definition 3D track of deep diving cetaceans from a five-channel, small-aperture hydrophone array on a moving autonomous surface vehicle (ASV), enabled by the vessel's hydrodynamic quality and a high recording sample rate. Real-time processing is achieved by splitting our non-uniform array into two parts for time delay of arrival estimation. Resulting 3D tracks depict the behavior of the cetacean in the abyss (-1.2 km), with one position per second. This high resolution allows us to observe a correlation between the repetition rate of the predator's biosonar and the tortuosity of its track. Our proposed mobile observatory may offer new insights about whale behavior and its foraging success close to vessel traffic.
机译:检测和定位抹香鲸的回声定位滴答声可以深入了解它们的潜水行为,但是现有方法范围有限,不精确或成本高昂。在这项工作中,我们证明了在船只的水动力质量和高记录的支持下,我们可以从移动自主水面航行器(ASV)上的五通道小孔径水听器阵列中获得深海鲸类动物的高清3D轨迹采样率。实时处理是通过将非均匀数组分成两部分来实现到达估计的时间延迟来实现的。生成的3D轨迹以每秒1个位置的速度描绘了鲸类在深渊(-1.2 km)中的行为。这种高分辨率使我们能够观察到捕食者生物声纳的重复率与其轨迹的曲折度之间的相关性。我们提议的移动式天文台可能会提供有关鲸鱼行为及其在接近船只交通时觅食成功的新见解。

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