Field tests of the hybrid remotely operated vehicle (HROV) light fiber optic tether

被引:0
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作者
Young, Chris [1 ]
Fletcher, Barbara
Buescher, James
Whitcomb, Louis L.
Yoerger, Dana
Bowen, Andrew
McCabe, Robert
Heintz, Matt
Fuhrmann, Robert
Taylor, Chris
Elder, Robert
机构
[1] Space & Naval Warfare Syst Ctr, San Diego, CA USA
[2] Johns Hopkins Univ, Baltimore, MD USA
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中图分类号
P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
The Hybrid Remotely Operated Vehicle (HROV), being designed and built by Woods Hole Oceanographic Institution (WHOI) with the support of the Space and Naval Warfare Systems Center San Diego (SSC San Diego), Will provide a new level of accessibility for deep ocean research. HROV will be primarily an autonomous vehicle but will be reconfigurable to a teleoperated system by the installation of a fiber optic data link and a manipulator based work system. Development of the fiber optic link has been supported by both simulation and a series of field tests over the past 3 years. The November 2004 tests consisted of deploying two different types of fiber optic cable from an oceanographic elevator deployed from a ship to 2000m depth. Data collected from this test demonstrated the feasibility of using both the Fiber Optic Microcable (FOMC) and plain buffered optical fiber as a tether for the HROV. The December 2005 tests demonstrated the utility of the buffered optical fiber operating on an underwater vehicle using the WHOI ABE vehicle as a substitute for the future HROV. Five dives were made to 2000 in with real-time communication from the vehicle to the surface via the fiber. The May 2006 tests focused on the employment of a cable depressor and deployment system. Using a deep elevator as a substitute for HROV, the fiber was deployed from both the depressor and the elevator to a depth of 4200 in. Over the course of 4 deployments, over 16 kin of fiber was deployed, operating for a total of 33 hours, demonstrating the feasibility of the planned approach.
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页码:822 / 827
页数:6
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