Fr. 47.50

Modeling and Simulation of Underwater Flexible Robot

English, German · Paperback / Softback

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Seventy percent of the earth is surrounded by water and there may be lots of raw material still unexplored. A human being cannot dive longer because breathing could be one of the major constraints. For the deep-sea applications like debris removal, pipeline inspection, surveys, telecommunications support, research, maintenance, there must be need of some technology which can venture down without any constraints. Underwater robots technology is the best solution to this because robots do not have to breathe like a human being. But there are problems in case of underwater robots. One of the major problems is trajectory control of the link. Because of dynamic coupling between the base and the link, on which various forces acting on the link and manipulator, the arm deviates from its desired trajectory in the presence of buoyancy forces. This dissertation work presents the dynamic modeling and trajectory control of underwater robot using bond graph, which include the base of the plant, one link arm and the motor. The underwater robot is modeled with the integration of the overwhelming controller. The integrated bond graph model is also made for the complete underwater vehicle. Modelin

About the author










Il Dr. Chandan Deep Singh lavora come professore assistente presso il dipartimento di ingegneria meccanica dell'Università di Punjabi, Patiala. Ha completato il dottorato di ricerca in ingegneria meccanica nel 2016. Ha all'attivo circa 60 pubblicazioni su varie riviste internazionali e ha guidato circa 30 studenti per la tesi di M.Tech.

Product details

Authors Sumi Kumar, Sumit Kumar, Sunil Kumar, Chandan Dee Singh, Chandan Deep Singh
Publisher LAP Lambert Academic Publishing
 
Languages English, German
Product format Paperback / Softback
Released 28.03.2017
 
EAN 9783330053557
ISBN 978-3-33-005355-7
No. of pages 56
Subject Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

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