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Exploiting Adaptive and Collaborative AUV Autonomy for Detection and Characterization of Internal Waves

机译:利用自适应协同AUV自主检测和表征内波

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摘要

Advances in the fields of autonomy software and environmental sampling techniques for autonomous underwater vehicles (AUVs) have recently allowed for the merging of oceanographic data collection with the testing of emerging marine technology. The Massachusetts Institute of Technology (MIT) Laboratory for Autonomous Marine Sensing Systems (LAMSS) group conducted an Internal Wave Detection Experiment in August 2010 with these advances in mind. The goal was to have multiple AUVs collaborate autonomously through onboard autonomy software and real-time underwater acoustic communication to monitor for the presence of internal waves by adapting to changes in the environment (specifically the temperature variations near the thermocline/pycnocline depth). The experimental setup, implementation, data, deployment results, and internal wave detection and quantification results are presented in this paper.
机译:自主软件和用于水下自动航行器(AUV)的环境采样技术领域的进步最近允许将海洋学数据收集与新兴海洋技术的测试相结合。考虑到这些进展,麻省理工学院(MIT)自主海洋传感系统(LAMSS)实验室进行了内部波检测实验。目标是让多个AUV通过机载自治软件和实时水下声通信系统进行自主协作,以通过适应环境变化(特别是温跃线/比可可线深度附近的温度变化)来监视内部波的存在。本文介绍了实验设置,实施,数据,部署结果以及内部波检测和量化结果。

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