Guidance and Control of Ocean Vehicles

Guidance and Control of Ocean Vehicles
Author: Thor I. Fossen
Publisher: John Wiley & Sons
Total Pages: 504
Release: 1994-09-20
Genre: Sports & Recreation
ISBN:

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A comprehensive and extensive study of the latest research in control systems for marine vehicles. Demonstrates how the implementation of mathematical models and modern control theory can reduce fuel consumption and improve reliability and performance. Coverage includes ocean vehicle modeling, environmental disturbances, the dynamics and stability of ships, sensor and navigation systems. Numerous examples and exercises facilitate understanding.

Control of Ships and Underwater Vehicles

Control of Ships and Underwater Vehicles
Author: Khac Duc Do
Publisher: Springer Science & Business Media
Total Pages: 402
Release: 2009-08-09
Genre: Technology & Engineering
ISBN: 184882730X

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Most ocean vessels are underactuated but control of their motion in the real ocean environment is essential. Starting with a review of the 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. 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; - efficient designs for the implementation of controllers on underactuated ocean vessels; - 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.

Handbook of Marine Craft Hydrodynamics and Motion Control

Handbook of Marine Craft Hydrodynamics and Motion Control
Author: Thor I. Fossen
Publisher: John Wiley & Sons
Total Pages: 96
Release: 2021-04-16
Genre: Science
ISBN: 1119575036

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Handbook of MARINE CRAFT HYDRODYNAMICS AND MOTION CONTROL The latest tools for analysis and design of advanced GNC systems Handbook of Marine Craft Hydrodynamics and Motion Control is an extensive study of the latest research in hydrodynamics, guidance, navigation, and control systems for marine craft. The text establishes how the implementation of mathematical models and modern control theory can be used for simulation and verification of control systems, decision-support systems, and situational awareness systems. Coverage includes hydrodynamic models for marine craft, models for wind, waves and ocean currents, dynamics and stability of marine craft, advanced guidance principles, sensor fusion, and inertial navigation. This important book includes the latest tools for analysis and design of advanced GNC systems and presents new material on unmanned underwater vehicles, surface craft, and autonomous vehicles. References and examples are included to enable engineers to analyze existing projects before making their own designs, as well as MATLAB scripts for hands-on software development and testing. Highlights of this Second Edition include: Topical case studies and worked examples demonstrating how you can apply modeling and control design techniques to your own designs A Github repository with MATLAB scripts (MSS toolbox) compatible with the latest software releases from Mathworks New content on mathematical modeling, including models for ships and underwater vehicles, hydrostatics, and control forces and moments New methods for guidance and navigation, including line-of-sight (LOS) guidance laws for path following, sensory systems, model-based navigation systems, and inertial navigation systems This fully revised Second Edition includes innovative research in hydrodynamics and GNC systems for marine craft, from ships to autonomous vehicles operating on the surface and under water. Handbook of Marine Craft Hydrodynamics and Motion Control is a must-have for students and engineers working with unmanned systems, field robots, autonomous vehicles, and ships. MSS toolbox: https://github.com/cybergalactic/mss Lecture notes: https://www.fossen.biz/wiley Author’s home page: https://www.fossen.biz

Advances in Unmanned Marine Vehicles

Advances in Unmanned Marine Vehicles
Author: G.N. Roberts
Publisher: IET
Total Pages: 461
Release: 2006-01-31
Genre: Technology & Engineering
ISBN: 0863414508

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Unmanned marine vehicles (UMVs) include autonomous underwater vehicles, remotely operated vehicles, semi-submersibles and unmanned surface craft. Considerable importance is being placed on the design and development of such vehicles, as they provide cost-effective solutions to a number of littoral, coastal and offshore problems. This book highlights the advanced technology that is evolving to meet the challenges being posed in this exciting and growing area of research.

Navigation and Control of Autonomous Marine Vehicles

Navigation and Control of Autonomous Marine Vehicles
Author: Sanjay Sharma
Publisher: Institution of Engineering and Technology
Total Pages: 348
Release: 2019-06-26
Genre: Technology & Engineering
ISBN: 1785613383

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Robotic marine vessels can be used for a wide range of purposes, including defence, marine science, offshore energy and hydrographic surveys, and environmental surveys and protection. Such vessels need to meet a variety of criteria: they must be able to operate in salt water, and to communicate and be controlled over large distances, even when submerged or in inclement weather. Further challenges include 3D navigation of individual vehicles, groups or squadrons. This book covers the current state of research in navigation, modelling and control of marine autonomous vehicles, and deals with various related topics, including collision avoidance, communication, and a range of applications. It provides valuable insights for an audience of researchers, academics and postgraduate students interested in autonomous marine vessels, robotics, and electrical and automobile engineering.

Undersea Vehicles and National Needs

Undersea Vehicles and National Needs
Author: Committee on Undersea Vehicles and National Needs
Publisher: National Academies Press
Total Pages: 114
Release: 1996-12-03
Genre: Science
ISBN: 0309588723

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The United States faces decisions requiring information about the oceans in vastly expanded scales of time and space and from oceanic sectors not accessible with the suite of tools now used by scientists and engineers. Advances in guidance and control, communications, sensors, and other technologies for undersea vehicles can provide an opportunity to understand the oceans' influence on the energy and chemical balance that sustains humankind and to manage and deliver resources from and beneath the sea. This book assesses the state of undersea vehicle technology and opportunities for vehicle applications in science and industry. It provides guidance about vehicle subsystem development priorities and describes how national research can be focused most effectively.

Orientation Guidance and Control for Marine Vehicles in the Horizontal Plane

Orientation Guidance and Control for Marine Vehicles in the Horizontal Plane
Author:
Publisher:
Total Pages: 49
Release: 1991
Genre:
ISBN:

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A pure pursuit guidance law and a heading autopilot are coupled in order to provide path control of submersibles or surface ships in the horizontal plane. Proper design of the combined scheme allows for accurate path keeping during straight line motion. The simulation results are extended to cover cases of step changes in the desired path. The scheme provides a viable alternative to cross track error autopilots.

Stability and Motion Control of Ocean Vehicles

Stability and Motion Control of Ocean Vehicles
Author: Martin A. Abkowitz
Publisher: MIT Press (MA)
Total Pages: 380
Release: 1969
Genre: Science
ISBN:

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On the basis of subject material covered in this work, ocean engineers will be in a position to understand and apply the hydrodynamic principles involved in designing vehicles and systems, determine how vehicles or systems respond to the environment, and also evaluate whether such vehicles can be expected to operate properly in the environment.