Robot Operating System (ROS): The Complete Reference (Volume 1): Studies in Computational Intelligence, cartea 625
Editat de Anis Koubaaen Limba Engleză Hardback – 17 feb 2016
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.
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Specificații
ISBN-13: 9783319260525
ISBN-10: 3319260529
Pagini: 1000
Ilustrații: XIII, 728 p. 352 illus., 86 illus. in color.
Dimensiuni: 155 x 235 x 40 mm
Greutate: 1.21 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Studies in Computational Intelligence
Locul publicării:Cham, Switzerland
ISBN-10: 3319260529
Pagini: 1000
Ilustrații: XIII, 728 p. 352 illus., 86 illus. in color.
Dimensiuni: 155 x 235 x 40 mm
Greutate: 1.21 kg
Ediția:1st ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Studies in Computational Intelligence
Locul publicării:Cham, Switzerland
Cuprins
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.
Part VII. Advanced Tools for ROS.
Recenzii
“This book has a lot of code. This feature is quite welcome for newbies and experts who want to replicate the successful robots detailed here. Another more-than-appreciated feature of this book is the section called ‘Software Engineering with ROS.’ … The book closes with advanced tools such as advanced debuggers and real-time implementations in ROS.” (Ramon Gonzalez Sanchez, Computing Reviews, computingreviews.com, July, 2016)
Textul de pe ultima copertă
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.
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.
Caracteristici
Contributions devoted to the Robot Operating System (ROS) with working examples, demonstrations and illustrations Comprehensive coverage of the Robot Operating Systems (ROS), which is currently considered as the main development framework for robotics applications Includes supplementary material representing all the code provided by the authors, which will be made available as open source in a Google Code repository Accompanying video channel for demonstrations related to chapters of the book Includes supplementary material: sn.pub/extras
Notă biografică
Anis Koubaa is a Professor of Computer Science, Aide to the Rector of Research Governance, Director of the Research and Initiatives Center, and Leader of the Robotics and Internet of Things Research Lab, at Prince Sultan University. He is also an R&D Consultant at Gaitech Robotics in China and Senior Researcher in CISTER/INESC TEC and ISEP-IPP, Porto, Portugal. He has been the Chair of the ACM Chapter in Saudi Arabia since 2014. He is also a Senior Fellow of the Higher Education Academy (HEA) in the UK.
His current research deals with providing solutions for the integration of robots and drones into the Internet of Things (IoT) and clouds for deep learning applications. He has developed several real-world applications and prototypes such as Dronemap Planner, a cloud-based management system for drones and robots, and ROSLink, which is a messaging protocol for integrating the Robot Operating System with the IoT. His research interests also include the Robot Operating System (ROS), robotic software engineering, wireless communication for the IoT, real-time communication, safety and security for cloud robotics, intelligent algorithm design for mobile robots, and multi-robot task allocation.
His current research deals with providing solutions for the integration of robots and drones into the Internet of Things (IoT) and clouds for deep learning applications. He has developed several real-world applications and prototypes such as Dronemap Planner, a cloud-based management system for drones and robots, and ROSLink, which is a messaging protocol for integrating the Robot Operating System with the IoT. His research interests also include the Robot Operating System (ROS), robotic software engineering, wireless communication for the IoT, real-time communication, safety and security for cloud robotics, intelligent algorithm design for mobile robots, and multi-robot task allocation.