
Offshore Mechatronics Systems Engineering
Description
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With the rapid improvements in offshore technologies in various fields such as oil and gas industry, wind energy, robotics and logistics, many researchers in academia and industry have focused on technology-based challenges raised in offshore environment. This book introduces novel theoretical or practical techniques for offshore mechatronics systems.
Chapters cover general application model-based systems engineering, wind energy, control systems, mechanics, health monitoring, safety critical human-machine systems, logistics and offshore industrial complexes such as oil and gas operations, robotics, large space structures and autonomous underwater vehicles, and some other advanced technologies.
The core feature of this book is that of establishing synergies of modeling, control, computing and mechanics in order to achieve not only robust plant system operation but also properties such as safety, cost, integrity and survivability while retaining desired performance quality.
The book provides innovative insights into applications aspects and theoretical understanding of complex offshore mechatronics systems that has emerged in recent years, either via physical implementations or via extensive computer simulations in addition to sound innovated theoretical developments. It will serve as a reference for graduate and postgraduate students and for researchers in all engineering disciplines, including mechanical engineering, electrical engineering and applied mathematics to explore the state-of-theart techniques for solving problems of integrated modeling, control and supervision of complex offshore plants with collective safety and robustness. Thus it shall be useful as a guidance for system engineering practitioners and system theoretic researchers alike.
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Dr. Karimi's research interests are in the areas of control systems/theory, networked control systems, intelligent control systems, signal processing, power electronics, vibration control, ground vehicles, structural control, wind turbine control, and cutting processes. Over the last 10 years, Dr. Karimi has been working on mathematical systems and control theory with an emphasis on applications in industrial engineering, such as offshore systems, wind turbine systems, structural control, and logistic networks. He and his research group have provided solutions to many open and long standing optimal control and optimization problems.
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