Cloud-Based Cyber-Physical Systems in Manufacturing

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About this book

This book presents state-of-the-art research, challenges and solutions in the area of cloud-based cyber-physical systems (CPS) used in manufacturing. It provides a comprehensive review of the literature and an in-depth treatment of novel methodologies, algorithms and systems in the area of architecture design, cyber security, process planning, monitoring and control.

The book features detailed descriptions of how to derive solutions in a cloud environment where physical machines can be supported by cyber decision systems when engaged in real operations. It presents a range of novel ideas and is characterized by a balanced approach in terms of scope vs. depth and theory vs. applications. It also takes into account the need to present intellectual challenges while appealing to a broad readership, including academic researchers, practicing engineers and managers, and graduate students.

Dedicated to the topic of cloud-based CPS and its practical applications in manufacturing, this book benefits readers from all manufacturing sectors, from system design to lifecycle engineering and from process planning to machine control. It also helps readers to understand the present challenges and future research directions towards factories of the future, helping them to position themselves strategically for career development.

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Table of contents (15 chapters)

Front Matter

Pages i-xvii

Literature Survey and Trends

Front Matter

Latest Advancement in Cloud Technologies

Latest Advancement in CPS and IoT Applications

Pages 33-61

Challenges in Cybersecurity

Pages 63-79

Cloud-Based Monitoring, Planning and Control in CPS

Front Matter

Pages 81-81

Machine Availability Monitoring and Process Planning

Pages 83-103

Cloud-Enabled Distributed Process Planning

Pages 105-123

Adaptive Machining Using Function Blocks

Pages 125-162

Condition Monitoring for Predictive Maintenance

Pages 163-192

Sustainable Robotic Assembly in CPS Settings

Front Matter

Pages 193-193

Resource Efficiency Calculation as a Cloud Service

Pages 195-209

Safety in Human-Robot Collaborative Assembly

Pages 211-241

Cloud Robotics Towards a CPS Assembly System

Pages 243-259

Context-Aware Human-Robot Collaborative Assembly

Pages 261-294

CPS Systems Design and Lifecycle Analysis

Front Matter

Pages 295-295

Architecture Design of Cloud CPS in Manufacturing

Pages 297-323

Product Tracking and WEEE Management

Pages 325-346

Big Data Analytics for Scheduling and Machining

Pages 347-375

Outlook of Cloud, CPS and IoT in Manufacturing

Pages 377-398

Authors and Affiliations

Department of Production Engineering, KTH Royal Institute of Technology, Stockholm, Sweden

About the authors

Professor Lihui Wang is currently Chair of Sustainable Manufacturing at the KTH Royal Institute of Technology, Sweden. Contributing to cutting-edge academic research, highly qualified personnel training, technologies transfer to industries, and the advancement of engineering science and manufacturing, Professor Lihui Wang holds a PhD in Intelligence Science from Kobe University, Kobe, Japan, and has been the recipient of numerous awards including the ‘Best Paper Award’ at the International Conference on FAIM, Dresden, Germany, July 2002 and the Best Organiser of Symposium and Sessions (BOSS) Award at the ASME Manufacturing Science and Engineering Conference, Detroit, USA, June 2014, amongst others.

He is currently Editor-in-Chief of the International Journal of Manufacturing Research and Editor for the Journal of Intelligent Manufacturing, Robotics and Computer-Integrated Manufacturing, and an Editorial Board Member of the Chinese Journal of Mechanical Engineering and the International Journal of Computer Integrated Manufacturing, amongst others.

Professor Lihui Wang has published over 130 refereed journal papers and is author of more than 7 books and 15 book chapters. He is also an associate member of the International Academy for Production Engineering (CIRP).

Xi Vincent Wang is currently a Postdoctoral Research fellow in Production Systems, Cloud Manufacturing and Robotics/Cyber Physical Systems at the KTH Royal Institute of Technology, Sweden.

He is Managing Editor of the International Journal of Manufacturing Research and serves as Project Manager of the EU SYMBIO-TIC project.

Holding a PhD in Mechanical Engineering from the University of Auckland and a Bachelor of Engineering from Tianjin University, Xi Vincent Wang has published numerous journal articles and book chapters.

Bibliographic Information