水下滑翔机:最新发展和未来应用

R. Bachmayer, N. Leonard, J. Graver, E. Fiorelli, Pradeep Bhatta, D. Paley
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引用次数: 130

摘要

自主水下航行器,特别是自主水下滑翔机,代表了一种快速成熟的技术,与目前持续(一个月一次)实时测量的海洋采样技术相比,具有巨大的成本节约潜力。我们给出了水下滑翔机系统的主要组成部分的概述,用于推进,控制,通信和传感。利用2003年在加利福尼亚州蒙特利湾进行的AOSN-II现场试验,描述了典型的滑翔机操作,包括部署、规划、监测和恢复。我们简要介绍了NRC-IOT的最新发展,特别是用于动力学和控制研究的实验室规模滑翔机的发展以及使用水下滑翔机的区域海洋观测系统的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Underwater gliders: recent developments and future applications
Autonomous underwater vehicles, and in particular autonomous underwater gliders, represent a rapidly maturing technology with a large cost-saving potential over current ocean sampling technologies for sustained (month at a time) real-time measurements. We give an overview of the main building blocks of an underwater glider system for propulsion, control, communication and sensing. A typical glider operation, consisting of deployment, planning, monitoring and recovery are described using the 2003 AOSN-II field experiment in Monterey Bay, California. We briefly describe the recent developments at NRC-IOT, in particular, the development of a laboratory-scale glider for dynamics and control research and the concept of a regional ocean observation system using underwater gliders.
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