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Autonomous Mobile Robots: Sensing, Control, Decision Making and Applications (Automation and Control Engineering)
 
 
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Autonomous Mobile Robots: Sensing, Control, Decision Making and Applications (Automation and Control Engineering) [Hardcover]

Shuzhi Sam Ge (Author)

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Book Description

0849337488 978-0849337482 May 4, 2006 1
It has long been the goal of engineers to develop tools that enhance our ability to do work, increase our quality of life, or perform tasks that are either beyond our ability, too hazardous, or too tedious to be left to human efforts. Autonomous mobile robots are the culmination of decades of research and development, and their potential is seemingly unlimited.

Roadmap to the Future
Serving as the first comprehensive reference on this interdisciplinary technology, Autonomous Mobile Robots: Sensing, Control, Decision Making, and Applications authoritatively addresses the theoretical, technical, and practical aspects of the field. The book examines in detail the key components that form an autonomous mobile robot, from sensors and sensor fusion to modeling and control, map building and path planning, and decision making and autonomy, and to the final integration of these components for diversified applications.

Trusted Guidance
A duo of accomplished experts leads a team of renowned international researchers and professionals who provide detailed technical reviews and the latest solutions to a variety of important problems. They share hard-won insight into the practical implementation and integration issues involved in developing autonomous and open robotic systems, along with in-depth examples, current and future applications, and extensive illustrations.

For anyone involved in researching, designing, or deploying autonomous robotic systems, Autonomous Mobile Robots is the perfect resource.

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
target presence probability, derived information space, kinodynamic constraints, measured range bins, follower vehicle, nondeterministic uncertainty, nonholonomic control systems, experimental unmanned vehicle, ladar data, receiver antenna position, chained systems, tracking maneuvers, interaction through the environment, neighbor robot, nonholonomic control problems, kinodynamic motion planning, nonholonomic systems, autonomous mobile systems, kinematic subsystem, resource configuration file, discontinuous control laws, role assignment mechanism, adaptive neural network control, error state vector, leader vehicle
Key Phrases - Capitalized Phrases (CAPs): (learn more)
International Conference, New York, International Journal of Robotics Research, International Symposium, Technical Report, Experimental Robotics, Road Network Database, Academic Press, Englewood Cliffs, San Francisco, Algorithmic Foundations of Robotics, Stanford University, Kluwer Academic Publishers, National University of Singapore, New Orleans, Prentice Hall, University of Southern California, Cambridge University Press, International Workshop, Proceedings of Intelligent Vehicle Symposium, Steve Clark, United States, University of Illinois, University of Pennsylvania, University of Zaragoza
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