DocumentCode
2516661
Title
Design of an underwater glider for education and research
Author
Gottschall, Alexandra K.
Author_Institution
Dept. of Marine & Environ. Sci., Florida Inst. of Technol., Melbourne, FL, USA
fYear
2012
fDate
24-27 Sept. 2012
Firstpage
1
Lastpage
4
Abstract
The last decade has established the underwater glider as an important platform for oceanographic research. To further the capabilities of glider research three Florida Institute of Technology students have been actively designing a glider that is considerable cheaper than commercial gliders. This vehicle introduces external wing control surfaces for steering and a mechanical buoyancy engine. The aim of the work in progress is to develop a fully functional underwater glider as a platform for oceanographic research and design of underwater navigation and control algorithms. This goal is to be reached through a complete redesign and unification of the previous control components of both systems and the implementation of device driver libraries. Mechanical components such as the buoyancy engine have been reviewed and field tested off the Atlantic coast of Florida during the summer of 2012. Designed for a maximum depth of 100m the glider´s payload bays will enable the usage of various instruments in the coastal shelf region. The low weight (less than 25 kg) and small size (2m in length) allows deployments from small boats. GPS navigation, radio frequency and satellite communication (when surfaced) will make the glider an excellent vehicle for student research. Completion is expected for December 2012.
Keywords
Global Positioning System; buoyancy; control engineering education; design engineering; engines; marine engineering; path planning; underwater vehicles; Atlantic coast of Florida; GPS navigation; commercial gliders; control components; device driver libraries; fully functional underwater glider; mechanical buoyancy engine; oceanographic research; radio frequency communication; satellite communication; three Florida Institute of Technology students; underwater glider design; underwater navigation design; wing control surfaces; Batteries; Engines; Global Positioning System; Hardware; Software; Vehicles;
fLanguage
English
Publisher
ieee
Conference_Titel
Autonomous Underwater Vehicles (AUV), 2012 IEEE/OES
Conference_Location
Southampton
ISSN
1522-3167
Print_ISBN
978-1-4577-2055-0
Electronic_ISBN
1522-3167
Type
conf
DOI
10.1109/AUV.2012.6380723
Filename
6380723
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