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首页> 外文期刊>Marine Fisheries Review >Comparing Autonomous Underwater Vehicle (AUV) and Vessel-based Tracking Performance for Locating Acoustically Tagged Fish
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Comparing Autonomous Underwater Vehicle (AUV) and Vessel-based Tracking Performance for Locating Acoustically Tagged Fish

机译:比较自动水下航行器(AUV)和基于船只的跟踪性能来定位带有标签的鱼

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摘要

Autonomous underwater vehicles (AUV's) are increasingly used to collect physical, chemical, and biological information in the marine environment. Recent efforts include merging AUV technology with acoustic telemetry to provide information on the distribution and movements of marine fish. We compared surface vessel and AUV tracking capabilities under rigorous conditions in coastal waters near Juneau, Alaska. Tracking surveys were conducted with a REMUS 100 AUV equipped with an integrated acoustic receiver and hydrophone. The AUV was programmed to navigate along predetermined routes to detect both reference transmitters at 20-500 m depths and tagged fish and crabs in situ. Comparable boat surveys were also conducted. Transmitter depth had a major impact on tracking performance. The AUV was equally effective or better than the boat at detecting reference transmitters in shallow water, and significantly better for transmitters at deeper depths. Similar results were observed for tagged animals. Red kingcrab, Paralithodes camtschaticus, at moderate depths were recorded by both tracking methods, while only the AUV detected Sablefish, Anoplopoma fimbria, at depths exceeding 500 m. Strong currents and deep depths caused problems with AUV navigation, position estimation, and operational performance, but reflect problems encountered by other AUV applications that will likely diminish with future advances, enhanced methods, and increased use.
机译:自主水下航行器(AUV's)越来越多地用于收集海洋环境中的物理,化学和生物信息。最近的工作包括将AUV技术与声学遥测技术相结合,以提供有关海水鱼类分布和运动的信息。我们比较了阿拉斯加朱诺附近沿海水域在严格条件下的水面船只和AUV追踪能力。跟踪调查是使用配备有集成声接收器和水听器的REMUS 100 AUV进行的。 AUV被编程为沿着预定路线导航,以检测20-500 m深度的两个参考发射器以及原位标记的鱼和蟹。还进行了可比的船调查。发射器深度对跟踪性能有重大影响。在浅水中探测参考发射器时,AUV等效或优于船,对于更深的发射器,AUV明显更好。对于标记动物观察到相似的结果。两种追踪方法均记录了适中深度的红色国王蟹(Paralithodes camtschaticus),而只有AUV才在深度超过500 m的地方检测到了黑貂(Anoplopoma fimbria)。强流和深水引起了AUV导航,位置估计和操作性能方面的问题,但反映了其他AUV应用程序遇到的问题,这些问题可能会随着未来的进步,改进的方法和更多的使用而减少。

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