Written by a well-known expert in reliability engineering, this book presents up-to-date information on robot reliability, safety, and related areas in a single volume, eliminating the need to consult diverse sources. It covers fundamental mathematical concepts and reliability and safety basics for readers without prior knowledge of the subject. The book describes useful techniques for analyzing the reliability and safety of robot systems and includes examples with solutions, numerous problems, and extensive references.
Written by a well-known expert in reliability engineering, this book presents up-to-date information on robot reliability, safety, and related areas in a single volume, eliminating the need to consult diverse sources. It covers fundamental mathematical concepts and reliability and safety basics for readers without prior knowledge of the subject. The book describes useful techniques for analyzing the reliability and safety of robot systems and includes examples with solutions, numerous problems, and extensive references.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr. B.S. Dhillon is a professor of engineering management in the Department of Mechanical Engineering at the University of Ottawa. He has published over 376 articles on reliability engineering, maintainability, safety, and engineering management and authored 42 books on various aspects of healthcare, engineering management, design, reliability, safety, and quality. He received a PhD in industrial engineering from the University of Windsor.
Inhaltsangabe
Introduction. Basic Mathematical Concepts. Reliability and Safety Basics. Methods for Performing Reliability and Safety Analysis of Robot Systems. Robot Reliability. Robot Safety. Robot Accidents and Analysis. Robot Maintenance and Areas of Robotics Applications in Maintenance and Repair. Human Factors and Safety Considerations in Robotics Workplaces. Robot Testing, Costing, and Failure Data. Mathematical Models for Analysis of Robot-Related Reliability and Safety. Appendix. Index.
Introduction. Basic Mathematical Concepts. Reliability and Safety Basics. Methods for Performing Reliability and Safety Analysis of Robot Systems. Robot Reliability. Robot Safety. Robot Accidents and Analysis. Robot Maintenance and Areas of Robotics Applications in Maintenance and Repair. Human Factors and Safety Considerations in Robotics Workplaces. Robot Testing, Costing, and Failure Data. Mathematical Models for Analysis of Robot-Related Reliability and Safety. Appendix. Index.
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