REMUS自主水下航行器的新功能

M. Purcell, C. von Alt, B. Allen, T. Austin, N. Forrester, R. Goldsborough, R. Stokey
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引用次数: 33

摘要

自主水下航行器技术继续快速发展。由伍兹霍尔海洋研究所海洋系统实验室开发的REMUS(远程环境监测单元)是世界上应用最广泛的自主水下航行器之一。每年REMUS车辆都参加许多实地演习,以支持科学和海军研究目标。REMUS设计用于沿海作业,通常配备CTD、光散射传感器、侧扫声纳和上下视声多普勒电流剖面仪(ADCP)。额外的传感器很容易集成在车辆和生物发光仪器和湍流传感器包。最近的开发工作已经改进了REMUS车辆的整体设计和性能,包括集成了两个新的传感器。车辆的改进包括更低的阻力,新的推进装置,新的锂离子电池和新的外部接口。最大航速从1.75米/秒增加到3米/秒(6节),在1.5米/秒(3节)的巡航速度下,任务时长增加到22小时。REMUS已被用于演示一种新的自主水下航行器应用:羽流测绘。安装了罗丹明荧光计,以便在陡峭倾斜的海底绘制羽流图。现场测试的结果证明了AUV作为一种工具在这项任务中的有效性。第二辆REMUS车辆已经部署了一个光学传感器包。包装中的仪器包括叶绿素荧光计和上下观察的七通道辐射计。该软件包与标准CTD和ADCP相结合,生成了重要的科学数据集,支持物理和生物海洋学研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New capabilities of the REMUS autonomous underwater vehicle
Autonomous underwater vehicle technology continues to advance at a rapid pace. REMUS (Remote Environmental Monitoring UnitS), developed by the Oceanographic Systems Laboratory at the Woods Hole Oceanographic Institution, is one of the most widely used autonomous underwater vehicles in the world. Each year REMUS vehicles participate in numerous field exercises in support of scientific and navy research objectives. Designed for coastal operations, REMUS is normally deployed with a CTD, light scattering sensor, side scan sonar and an up-and-down looking acoustic doppler current profiler (ADCP). Additional sensors are easily integrated in the vehicle and a bioluminescence instrument and a turbulence sensor package. Recent development efforts have improved the REMUS vehicle overall design and performance, and include integration of two new sensors. Vehicle improvements include lower drag, a new propulsion, new lithium-ion batteries and a new external interface. Maximum speed has been increased from 1.75 m/s to almost 3 m/s (6 knots) and mission length has increased to 22 hours at the 1.5 m/s (3 knots) cruising speed. REMUS has been used to demonstrate a new autonomous underwater vehicle application: plume mapping. A rhodamine fluorometer was installed to map a plume on a steep sloping sea floor. Results from the field test demonstrate the effectiveness of an AUV as a tool in this task. A second REMUS vehicle has been deployed with an optical sensor package. The instruments in the package include a chlorophyll fluorometer and up-and-down looking, seven channel radiometers. This package combined with the standard CTD and ADCP generates a significant scientific data set, which supports both physical and biological oceanographic research.
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