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Marine Robot Autonomy [electronic resource] / edited by Mae L. Seto.

Contributor(s): Material type: TextTextPublisher: New York, NY : Springer New York : Imprint: Springer, 2013Description: X, 382 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781461456599
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 629.892 23
LOC classification:
  • TJ210.2-211.495
  • T59.5
Online resources:
Contents:
Introduction to Autonomy for Marine Robots -- Autonomy for Unmanned Marine Vehicles with MOOS-IvP -- Towards Deliberative Control in Marine Robotics -- Path Planning for Autonomous Underwater Vehicles -- An Ontology Based Approach to Fault Tolerant Mission Execution for Autonomous      Platforms -- Cooperation Between Underwater Vehicles -- Behaviour Adaptation by Means of Reinforcement Learning -- Simultaneous Localization and Mapping in Marine Environments.
In: Springer eBooksSummary: Autonomy for Marine Robots provides a timely and insightful overview of intelligent autonomy in marine robots. A brief history of this emerging field is provided, along with a discussion of the challenges unique to the underwater environment and their impact on the level of intelligent autonomy required.  Topics covered at length examine advanced frameworks, path-planning, fault tolerance, machine learning, and cooperation as relevant to marine robots that need intelligent autonomy.  This book also: Discusses and offers solutions for the unique challenges presented by more complex missions and the dynamic underwater environment when operating autonomous marine robots Includes case studies that demonstrate intelligent autonomy in marine robots to perform underwater simultaneous localization and mapping  Autonomy for Marine Robots is an ideal book for researchers and engineers interested in the field of marine robots.      .
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Introduction to Autonomy for Marine Robots -- Autonomy for Unmanned Marine Vehicles with MOOS-IvP -- Towards Deliberative Control in Marine Robotics -- Path Planning for Autonomous Underwater Vehicles -- An Ontology Based Approach to Fault Tolerant Mission Execution for Autonomous      Platforms -- Cooperation Between Underwater Vehicles -- Behaviour Adaptation by Means of Reinforcement Learning -- Simultaneous Localization and Mapping in Marine Environments.

Autonomy for Marine Robots provides a timely and insightful overview of intelligent autonomy in marine robots. A brief history of this emerging field is provided, along with a discussion of the challenges unique to the underwater environment and their impact on the level of intelligent autonomy required.  Topics covered at length examine advanced frameworks, path-planning, fault tolerance, machine learning, and cooperation as relevant to marine robots that need intelligent autonomy.  This book also: Discusses and offers solutions for the unique challenges presented by more complex missions and the dynamic underwater environment when operating autonomous marine robots Includes case studies that demonstrate intelligent autonomy in marine robots to perform underwater simultaneous localization and mapping  Autonomy for Marine Robots is an ideal book for researchers and engineers interested in the field of marine robots.      .

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