Learn to create and implement digital twins across manufacturing, supply chain, and healthcare sectors, with practical training in Industry 4.0 applications.
Learn to create and implement digital twins across manufacturing, supply chain, and healthcare sectors, with practical training in Industry 4.0 applications.
This comprehensive course explores digital twin technology, a key component of Industry 4.0. Students learn about simulation technology that integrates multidisciplinary approaches, physical models, and sensor data. The course covers various applications across manufacturing, supply chain, and healthcare sectors. Participants gain practical knowledge in creating and implementing digital twins for process optimization, predictive maintenance, and system analysis. The curriculum progresses from fundamental concepts to advanced applications, culminating in discussions about future developments and Industry 5.0.
Instructors:
English
English
What you'll learn
Understand digital twin technology and its various types in industrial applications
Master the implementation of digital twins in manufacturing and production processes
Learn how to optimize supply chain and warehousing operations using digital twin technology
Explore healthcare applications of digital twins including bioengineering and hospital administration
Gain insights into future developments and applications in Industry 5.0
Skills you'll gain
This course includes:
PreRecorded video
Graded assignments, exams
Access on Mobile, Tablet, Desktop
Limited Access access
Shareable certificate
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There are 5 modules in this course
The course provides a comprehensive introduction to digital twin technology and its practical applications across various industries. Students learn the fundamental concepts of digital twins, including their characteristics and types. The curriculum covers implementation in manufacturing, supply chain management, and healthcare sectors. Topics include process automation, predictive maintenance, warehouse optimization, and healthcare applications. The course concludes with insights into future developments and Industry 5.0 implications.
What is a Digital Twin?
Module 1
Manufacturing and Production
Module 2
Supply Chain and Warehousing
Module 3
Healthcare
Module 4
Conclusions
Module 5
Fee Structure
Instructors

3 Courses
Virtual Reality and Industry 4.0 Expert at PolyU
Dr. Yuk Ming Tang serves as a Senior Teaching Fellow in the Department of Industrial and Systems Engineering at The Hong Kong Polytechnic University. After completing his B.Sc., M.Phil., and Ph.D. from The Chinese University of Hong Kong and postdoctoral research at CUHK's Faculty of Medicine, he has established himself as an expert in emerging technologies. As Lab-in-charge of Integrated Product Design and deputy Lab-in-charge of the Ng Tat Lun Digital Factory, he specializes in virtual reality, mixed reality, artificial intelligence, blockchain technology, and digital twins for industrial applications. His research involves numerous Innovation and Technology Fund projects and teaching and learning initiatives. He actively collaborates with industry partners, particularly in the healthcare sector, and has been recognized for his contributions through invitations to speak at the Hong Kong Hospital Authority healthcare symposium and appearances on TVB's "Innovation GPS" program

3 Courses
Materials Engineering and Manufacturing Technology Expert
Dr. Gary C.P. Tsui serves as an Associate Professor and ISE degree Programme Leader at The Hong Kong Polytechnic University's Department of Industrial and Systems Engineering. After earning his first-class honours degree in Manufacturing Engineering and PhD from PolyU, he has established himself as a specialist in composite material engineering and micro/nano-fabrication. His research contributions include over 130 papers in refereed journals and two US patents. He serves on the editorial boards of several international journals including "Nanotechnology Reviews," "Journal of Biomedical Engineering and Informatics," and "World Journal of Engineering." His expertise spans engineering materials, manufacturing processing technology, and finite element methods, making significant contributions to the field of materials engineering and manufacturing innovation.
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