Development of a remotely operated underwater vehicle

By: Call Number: AIT Caps. Proj. no.ME-15-23 Contributor(s): Material type: SeriesSeries: Asian Institute of Technology. Caps. Proj ; no. ME-15-23Publication details: Pathum Thani, Thailand : Asian Institute of Technology, 2015Description: 32 leaves : ill. (some col.) + 1 online resourceSubject(s): Online resources: Dissertation note: Capstone Project (B. Sc.) - Asian Institute of Technology, 2015 Summary: Development of a remotely operated underwater vehicle brings a vessel that can control four degrees of freedom underwater through propulsion. The vessel is controlled through a onboard live video streaming which gives the pilot of detailed overview over a 5m Ethernet cable, depending on the streaming feedback the pilot can manure the vehicle over a user interface which give the pilot to access of Surging, Heave, Tilt, and Rotate movements to look around. Furthermore it explains how these all functions are individually brought to alive and integrated piece by piece to make sure it works as a combination and bring about the final outcome which is well defined the project{u2019}s mentioned scope.
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20-AIT Publication Asian Institute of Technology Library AIT Publications AIT Caps. Proj. no.ME-15-23 (Browse shelf(Opens below)) 1 Available 30050160094503
20-AIT Publication Asian Institute of Technology Library AIT Publications AIT Caps. Proj. no.ME-15-23 (Browse shelf(Opens below)) 2 Available 30050160094495
40-Archives Asian Institute of Technology Library Archives AIT Caps. Proj. no.ME-15-23 (Browse shelf(Opens below)) 1 Available 30050120399166

A capstone project report submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Engineering Mechatronics, School of Engineering and Technology

Development of a remotely operated underwater vehicle brings a vessel that can control four degrees of freedom underwater through propulsion. The vessel is controlled through a onboard live video streaming which gives the pilot of detailed overview over a 5m Ethernet cable, depending on the streaming feedback the pilot can manure the vehicle over a user interface which give the pilot to access of Surging, Heave, Tilt, and Rotate movements to look around. Furthermore it explains how these all functions are individually brought to alive and integrated piece by piece to make sure it works as a combination and bring about the final outcome which is well defined the project{u2019}s mentioned scope.

Capstone Project (B. Sc.) - Asian Institute of Technology, 2015

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