Benchmark Models of Control System Design for Remotely Operated Vehicles

Benchmark Models of Control System Design for Remotely Operated Vehicles

AngličtinaPevná vazbaTisk na objednávku
Chin Cheng Siong
Springer Verlag, Singapore
EAN: 9789811565106
Tisk na objednávku
Předpokládané dodání v pondělí, 18. listopadu 2024
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Podrobné informace

This book is intended to meet the needs of those who seek to develop control systems for ROVs when there is no model available during the initial design stage. The modeling, simulation and application of marine vehicles like underwater robotic vehicles (URVs) are multidisciplinary, and combine mathematical aspects from various engineering disciplines. URVs such as remotely operated vehicle (ROVs) are used for a wide range of applications such as exploring the extreme depths of our ocean, where a hard-wired link is still required. Most ROVs operate in extreme environments with uncertainties in the model prior to control system design. However, the method involved extensive testing before the system model could be used for any control actions. It has been found that the range of error can be extensive and uncertain in actual, continuously varying conditions.  Hence, it is important to address the problem of reliance on model testing using different modeling approaches.

In this book, approaches such as WAMIT, ANSYS-CFX, STAR CCM+, MATLAB and Simulink are used to model parameters for ROVs. A few benchmark models are provided, allowing researchers and students to explore and test different control schemes. Given its scope, the book offers a valuable reference guide for postgraduate and undergraduate students engaged in modeling and simulation for ROV control. 


EAN 9789811565106
ISBN 9811565104
Typ produktu Pevná vazba
Vydavatel Springer Verlag, Singapore
Datum vydání 8. srpna 2020
Stránky 140
Jazyk English
Rozměry 235 x 155
Země Singapore
Sekce Professional & Scholarly
Autoři Chin Cheng Siong; Lau, Michael Wai Shing
Ilustrace XII, 140 p. 141 illus., 61 illus. in color.
Edice 1st ed. 2020