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Tekinerdogan / Verdouw

Digital Twins

Core Principles and AI Integration

Medium: Buch
ISBN: 978-0-443-45573-5
Verlag: Elsevier Science
Erscheinungstermin: 01.06.2026
vorbestellbar, Erscheinungstermin ca. Juni 2026

Digital Twins: Core Principles and AI Integration offers a structured and up-to-date overview of digital twin technology, combining foundational principles with the rapidly growing role of artificial intelligence (AI). This book introduces the core concepts, modeling approaches, and software and systems engineering foundations needed to design and implement digital twins effectively. It then explores architectural methods, lifecycle management, interoperability, and the alignment between physical systems and their digital representations. A central part of this book focuses on data science and AI-enabled digital twins, demonstrating how machine learning, deep learning, generative AI, and autonomous agents enhance predictive analytics, optimization, anomaly detection, and automated decision-making. Integration with Internet of Things (IoT), cloud–edge infrastructures, big data analytics, and XR technologies further shows how intelligent digital twins evolve into adaptive and interactive systems. Real-world applications from manufacturing, agriculture, food systems, energy, mobility, healthcare, and urban environments illustrate the practical value of AI-driven digital twins. This book concludes with key challenges and future directions, including trustworthy AI, security, data governance, and the scaling of digital twin ecosystems.


Produkteigenschaften


  • Artikelnummer: 9780443455735
  • Medium: Buch
  • ISBN: 978-0-443-45573-5
  • Verlag: Elsevier Science
  • Erscheinungstermin: 01.06.2026
  • Sprache(n): Englisch
  • Auflage: Erscheinungsjahr 2026
  • Produktform: Kartoniert
  • Gewicht: 449 g
  • Seiten: 394
  • Format (B x H): 216 x 276 mm
  • Ausgabetyp: Kein, Unbekannt
Autoren/Hrsg.

Herausgeber

Dr. Bedir Tekinerdogan is a full professor and chair of the Information Technology group at Wageningen University in The Netherlands. He received his MSc degree (1994) and a PhD degree (2000) in Computer Science, both from the University of Twente, The Netherlands. From 2003 until 2008 he was a faculty member at University of Twente, after which he joined Bilkent University until 2015. He has more than 20 years of experience in software engineering research and education. His main research includes the engineering of smart software-intensive systems. In particular, he has focused on and is interested in software architecture design, software product line engineering, model-driven development, parallel computing, cloud computing and system of systems engineering. He has been active in dozens of national and international research and consultancy projects with various large software companies whereby he has worked as a principal researcher and leading software/system architect. He has developed and taught more than 15 different academic software engineering courses and has provided software engineering courses to more than 50 companies in The Netherlands, Germany and Turkey.

Dr. Cor Verdouw is a senior scientist at Wageningen University & Research in The Netherlands. He holds a degree in Business Economics from Erasmus University Rotterdam and received his Ph.D. from Wageningen University. His research focusses on key areas such as business informatics, agri-food chains and digital innovation. He has over 20 years of experience in research and education within this field. He has extensive expertise in coordinating national and European research and innovation projects across diverse agri-food sectors. In addition to his academic work, he has gained industry experience as a business consultant and as an innovation manager at a horticulture-focused software company.

PART I: INTRODUCTION AND FOUNDATIONS
1. Introduction
2. Foundational Concepts of Digital Twins
3. Technological Ecosystem of Digital Twins

PART II: INTEGRATION WITH ADVANCED DIGITAL SOLUTIONS
4. Integration with Artificial Intelligence (AI)
5. Integration with the Internet of Things (IoT)
6. Integration with Cloud Computing
7. Integration with Big Data Analytics
8. Integration with Extended Reality (XR)

PART III: APPLICATIONS IN VARIOUS SECTORS
9. Applications in Smart Manufacturing and Industry 4.0
10. Applications in Healthcare and Personalized Medicine
11. Applications in Smart Agriculture and Food
12. Applications in Smart Cities and Urban Planning
13. Applications in Energy and Utilities
14. Applications in Aerospace and Defense

PART IV: CHALLENGES, SOLUTIONS, AND FUTURE TRENDS
15. Challenges and Solutions in Digital Twin Integration
16. Future Trends and Research Directions