Robot operating system (ROS) : the complete reference

著者

    • Koubaa, Anis

書誌事項

Robot operating system (ROS) : the complete reference

Anis Koubaa, editor

(Studies in computational intelligence, v. 625, 778)

Springer, c2016-

  • v. 1
  • v. 3

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注記

Includes bibliographical references

内容説明・目次

巻冊次

v. 1 ISBN 9783319260525

内容説明

The objective of this book is to provide the reader with a comprehensive coverage on the Robot Operating Systems (ROS) and latest related systems, which is currently considered as the main development framework for robotics applications. The book includes twenty-seven chapters organized into eight parts. Part 1 presents the basics and foundations of ROS. In Part 2, four chapters deal with navigation, motion and planning. Part 3 provides four examples of service and experimental robots. Part 4 deals with real-world deployment of applications. Part 5 presents signal-processing tools for perception and sensing. Part 6 provides software engineering methodologies to design complex software with ROS. Simulations frameworks are presented in Part 7. Finally, Part 8 presents advanced tools and frameworks for ROS including multi-master extension, network introspection, controllers and cognitive systems. This book will be a valuable companion for ROS users and developers to learn more ROS capabilities and features.

目次

Part I. ROS Basics and Foundations.- Part II. Navigation, Motion and Planning.- Part III. Service and Experimental Robots.- Part IV. Real-World Applications Deployment.- Part V. Perception and Sensing.- Part VI. Software Engineering with ROS.- Part VII. ROS Simulation Frameworks.- Part VII. Advanced Tools for ROS.
巻冊次

v. 3 ISBN 9783319915890

内容説明

Building on the successful first and second volumes, this book is the third volume of the Springer book on the Robot Operating System (ROS): The Complete Reference. The Robot Operating System is evolving from year to year with a wealth of new contributed packages and enhanced capabilities. Further, the ROS is being integrated into various robots and systems and is becoming an embedded technology in emerging robotics platforms. The objective of this third volume is to provide readers with additional and comprehensive coverage of the ROS and an overview of the latest achievements, trends and packages developed with and for it. Combining tutorials, case studies, and research papers, the book consists of sixteen chapters and is divided into five parts. Part 1 presents multi-robot systems with the ROS. In Part 2, four chapters deal with the development of unmanned aerial systems and their applications. In turn, Part 3 highlights recent work related to navigation, motion planning and control. Part 4 discusses recently contributed ROS packages for security, ROS2, GPU usage, and real-time processing. Lastly, Part 5 deals with new interfaces allowing users to interact with robots. Taken together, the three volumes of this book offer a valuable reference guide for ROS users, researchers, learners and developers alike. Its breadth of coverage makes it a unique resource.

目次

A ROS-based framework for simulation and benchmarking of multi-robot patrolling algorithms.- ROS: Developing a new generation of operator interfaces.- Autonomous Exploration and Inspection Path Planning for Aerial Robots using the Robot Operating System.- A generic ROS-based System for Rapid Development and Testing of Algorithms for Autonomous Ground and Aerial Vehicles.- A generic ROS-based System for Rapid Development and Testing of Algorithms for Autonomous Ground and Aerial Vehicles.- ROS-based Approach for Unmanned Vehicles in Civil Applications.- A quadcopter and mobile robot cooperative task using Augmented Reality Tags.- An Extensible Optimization Toolset for Motion Planning and Control Prototyping and Benchmarking.- Online Trajectory Optimization and Navigation for Dynamic Environments in ROS.- A Backstepping Non-smooth Controller for ROS-based Differential-Drive Mobile Robots.- University Rover Challenge: Tutorials and Control System Survey.- SROS: Using and Developing Secure ROS Systems.- GPU and ROS - The use of general parallel processing architecture for robot perception.- Connecting ROS and FIWARE: concepts and tutorial.

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