Control of Ships and Underwater Vehicles Design for Underactuated and Nonlinear Marine Systems

Written for researchers in and practitioners of control engineering applied to marine technology this monograph provides a variety of solutions to advanced feedback controltopics of practical significance in underactuated ocean vessels. Its self-contained, from-the-basics style also makes it a usefu...

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Bibliographic Details
Main Authors: Do, Khac Duc, Pan, Jie (Author)
Format: eBook
Language:English
Published: London Springer London 2009, 2009
Edition:1st ed. 2009
Series:Advances in Industrial Control
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Control of Ships and Underwater Vehicles  |h Elektronische Ressource  |b Design for Underactuated and Nonlinear Marine Systems  |c by Khac Duc Do, Jie Pan 
250 |a 1st ed. 2009 
260 |a London  |b Springer London  |c 2009, 2009 
300 |a XVII, 401 p  |b online resource 
505 0 |a Mathematical Tools -- Mathematical Preliminaries -- Modeling and Control Properties of Ocean Vessels -- Modeling of Ocean Vessels -- Control Properties and Previous Work on Control of Ocean Vessels -- Control of Underactuated Ships -- Trajectory-tracking Control of Underactuated Ships -- Simultaneous Stabilization and Trajectory-tracking Control of Underactuated Ships -- Partial-state and Output Feedback Trajectory-tracking Control of Underactuated Ships -- Path-tracking Control of Underactuated Ships -- Way-point Tracking Control of Underactuated Ships -- Path-following of Underactuated Ships Using Serret–Frenet Coordinates -- Path-following of Underactuated Ships Using Polar Coordinates -- Control of Underactuated Underwater Vehicles -- Trajectory-tracking Control of Underactuated Underwater Vehicles -- Path-following of Underactuated Underwater Vehicles -- Control of Other Underactuated Mechanical Systems -- Control of Other Underactuated Mechanical Systems -- Conclusions and Perspectives 
653 |a Offshore Engineering 
653 |a Offshore structures 
653 |a Control and Systems Theory 
653 |a Control engineering 
653 |a Mechanical engineering 
653 |a Mechanical Engineering 
700 1 |a Pan, Jie  |e [author] 
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520 |a Written for researchers in and practitioners of control engineering applied to marine technology this monograph provides a variety of solutions to advanced feedback controltopics of practical significance in underactuated ocean vessels. Its self-contained, from-the-basics style also makes it a useful resource for graduate students in marine control and readers interested in learning through self-study 
520 |a Most ocean vessels are underactuated but control of their motion in the real ocean environment is essential. Control of Ships and Underwater Vehicles concentrates on the control of underactuated ocean vessels both surface and submarine. Having more degrees of freedom to be controlled than the number of independent control inputs these vessels give rise to numerous challenges within the area of applied nonlinear control which are of growing concern because of their prevalence. Starting with a review of the necessary background on ocean-vessel dynamics and nonlinear control theory, the authors’ systematic approach is based on various nontrivial coordinate transformations coupled with advanced nonlinear control design methods building on Lyapunov’s direct method, backstepping, and parameter projection techniques.  
520 |a This strategy is then used for the development and analysis of a number of ocean-vessel control systems with the aim of achieving advanced motion control tasks including stabilization, trajectory-tracking, path-tracking and path-following. Control of Ships and Underwater Vehicles offers the reader: • new results in the nonlinear control of underactuated ocean vessels that counter environmental disturbances induced by wind, waves and ocean currents; • efficient designs for the practical implementation of controllers on underactuated ocean vessels; • extensive numerical simulations and real-time implementations of the control systems designed on a scale-model ship for each controller developed to illustrate their effectiveness and afford practical guidance; and • general methods and strategies for solving nonlinear control problems of other underactuated systems including underactuated land and aerial vehicles.