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  • © 2018

Diagnosability, Security and Safety of Hybrid Dynamic and Cyber-Physical Systems

  • Synthesizes the state of the art in the domain of ensuring the security of cyber physical systems in presence of attacks and verifying their diagnosability in presence of different kinds of uncertainty
  • Studies the complementarities and the links between the different methods and techniques of fault diagnosis of hybrid dynamic systems
  • Includes the required notions, definitions and background to understand the problem of fault diagnosis of hybrid dynamic systems and how to solve it
  • Uses multiple examples in order to facilitate the understanding of the presented methods

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Table of contents (11 chapters)

  1. Front Matter

    Pages i-x
  2. Prologue

    • Moamar Sayed-Mouchaweh
    Pages 1-15
  3. Wind Turbine Fault Localization: A Practical Application of Model-Based Diagnosis

    • Roxane Koitz, Franz Wotawa, Johannes Lüftenegger, Christopher S. Gray, Franz Langmayr
    Pages 17-43
  4. Active Diagnosis for Switched Systems Using Mealy Machine Modeling

    • Jeremy Van Gorp, Alessandro Giua, Michael Defoort, Mohamed Djemaï
    Pages 147-173
  5. Secure Diagnosability of Hybrid Dynamical Systems

    • Gabriella Fiore, Elena De Santis, Maria Domenica Di Benedetto
    Pages 175-200
  6. Diagnosis in Cyber-Physical Systems with Fault Protection Assemblies

    • Ajay Chhokra, Abhishek Dubey, Nagabhushan Mahadevan, Saqib Hasan, Gabor Karsai
    Pages 201-225
  7. Diagnosability of Discrete Faults with Uncertain Observations

    • Alban Grastien, Marina Zanella
    Pages 253-278
  8. Abstractions Refinement for Hybrid Systems Diagnosability Analysis

    • Hadi Zaatiti, Lina Ye, Philippe Dague, Jean-Pierre Gallois, Louise Travé-Massuyès
    Pages 279-318
  9. Back Matter

    Pages 319-327

About this book

Cyber-physical systems (CPS) are characterized as a combination of physical (physical plant, process, network) and cyber (software, algorithm, computation) components whose operations are monitored, controlled, coordinated, and integrated by a computing and communicating core. The interaction between both physical and cyber components requires tools allowing analyzing and modeling both the discrete and continuous dynamics. Therefore, many CPS can be modeled as hybrid dynamic systems in order to take into account both discrete and continuous behaviors as well as the interactions between them. Guaranteeing the security and safety of CPS is a challenging task because of the inherent interconnected and heterogeneous combination of behaviors (cyber/physical, discrete/continuous) in these systems. This book presents recent and advanced approaches and tech-niques that address the complex problem of analyzing the diagnosability property of cyber physical systems and ensuring their securityand safety against faults and attacks. The CPS are modeled as hybrid dynamic systems using different model-based and data-driven approaches in different application domains (electric transmission networks, wireless communication networks, intrusions in industrial control systems, intrusions in production systems, wind farms etc.). These approaches handle the problem of ensuring the security of CPS in presence of attacks and verifying their diagnosability in presence of different kinds of uncertainty (uncertainty related to the event occurrences, to their order of occurrence, to their value etc.).

Editors and Affiliations

  • Institute Mines-Telecom Lille Douai, Douai, France

    Moamar Sayed-Mouchaweh

About the editor

Moamar Sayed-Mouchaweh received his PhD from the University of Reims-France. He was working as Associated Professor in Computer Science, Control and Signal processing at the University of Reims-France in the Research center in Sciences and Technology of the Information and the Communication. In December 2008, he obtained the Habilitation to Direct Researches (HDR) in Computer science, Control and Signal processing. Since September 2011, he is working as a Full Professor in the High National Engineering School of Mines Department of Computer Science and Automatic Control. He edited the Springer book ‘Learning in Non-Stationary Environments: Methods and Applications‘, in April 2012 and wrote two SpringerBriefs ‘Discrete Event Systems: Diagnosis and Diagnosability’, and ‘Learning from Data Streams in Dynamic Environments’. He was a guest editor of several special issues of international journals. He was IPC Chair of conference Chair of several international workshops and conferences (IEEE International Conference on Machine Learning and Applications IEEE International Conference on Evolving and Adaptive Intelligent Systems). He is working as a member of the Editorial Board of Elsevier Journal “Applied Soft Computing” and Springer Journals “Evolving systems” and “Intelligent Industrial Systems”.

Bibliographic Information

Buy it now

Buying options

eBook USD 84.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 109.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 109.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access