Model-Implementation Fidelity in Cyber Physical System Design

Editors: Molnos, Anca, Fabre, Christian (Eds.)

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  • • Addresses CPS design problems such as cross-application interference, parsimonious modeling, and trustful code production
    • Describes solutions, such as simulation for extra-functional properties, extension of coding techniques, model-driven development, resource driven modeling, and quantitative and qualitative verification, based on statistics and formal proofs
    • Applies techniques to several CPS design challenges, such as mixed criticality, communication protocols, and computing platform simulation

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eBook 106,99 €
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  • ISBN 978-3-319-47307-9
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Hardcover 135,19 €
price for Spain (gross)
  • ISBN 978-3-319-47306-2
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  • Usually ready to be dispatched within 3 to 5 business days, if in stock
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Softcover 135,19 €
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  • ISBN 978-3-319-83705-5
  • Free shipping for individuals worldwide
  • Institutional customers should get in touch with their account manager
  • Covid-19 shipping restrictions
  • Usually ready to be dispatched within 3 to 5 business days, if in stock
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About this book

This book puts in focus various techniques for checking modeling fidelity of Cyber Physical Systems (CPS), with respect to the physical world they represent. The authors' present modeling and analysis techniques representing different communities, from very different angles, discuss their possible interactions, and discuss the commonalities and differences between their practices. Coverage includes model driven development, resource-driven development, statistical analysis, proofs of simulator implementation, compiler construction, power/temperature modeling of digital devices, high-level performance analysis, and code/device certification. Several industrial contexts are covered, including modeling of computing and communication, proof architectures models and statistical based validation techniques.

About the authors

Anca Molnos received her M.Sc. degree in computer science from the “Politehnica” University of Bucharest, Romania and the Ph.D. degree in computer engineering from the Delft University of Technology, The Netherlands, in 2001 and 2009, respectively. Between 2006 and 2009 she was senior scientist at NXP Semiconductors, The Netherlands, working on low-power multi-processors and distributed real-time systems. From 2009 to 2012 she was a researcher with the Delft University of Technology, working on embedded multi-core resource management for low-power and quality of service. In January 2013 she joined CEA LETI, where her research focuses on developing energy-aware software, energy and variability management, and frameworks for adaptable parallel systems. During the years, she (co-)authored more than 40 papers in journals and international conferences and several patents. She serves or served in many program committees, among which ICCD, ICCAD, RTCSA, ICPADS, as well as participated in the organization of several conferences and workshops as program committee chair, or other chair positions.
Christian Fabre received his Engineering degree from École nationale supérieure de mathématiques appliquées de Grenoble (ENSIMAG), France, in 1990 while working on a Transputer routing kernel. He joined the OPEN SOFTWARE FOUNDATION Research Institute in 1993 to work on ANDF, an intermediate language. Later he worked on Java Virtual Machines, Java compilation and embedded sotware components. He shared the “Best Embedded Java Product” with other members of the OSF-RI TurboJava team at JavaOne in 2000. After the acquisition of the OSF-RI by Groupe SILICOMP (now ORANGE Business Services) he was part of the corporate SILICOMP R&D team. Since 2004 he has transitioned from compilation and software development to system development by adopting the MDA/MDE approach for top-down co-design of mixed hardware/software systems. He joined CEA LETI in Grenoble, France in 2009 as a Senior Research Engineer. He has been involved in various collaborative projects, such as OMI-GLUE (Esprit 1992-1995), Pastoral (FP5 2000-2012), and Expresso (French RNTL Project, 2001-2003). He was the coordinator of PRO3D (FP7 2012-2012, http://pro3d.eu) and is currently coordinating COPCAMS (COgnitive & Perceptive CAMeraS, 2013-2016, http://copcams.eu), an Artemis/ECSEL project of more than 20 partners.

Table of contents (8 chapters)

Table of contents (8 chapters)
  • Building Faithful Embedded Systems Models: Challenges and Opportunities

    Pages 1-24

    Nouri, Ayoub (et al.)

  • Resource-Driven Modelling for Managing Model Fidelity

    Pages 25-55

    Rafiev, Ashur (et al.)

  • Empowering Mixed-Criticality System Engineers in the Dark Silicon Era: Towards Power and Temperature Analysis of Heterogeneous MPSoCs at System Level

    Pages 57-90

    Grüttner, Kim

  • Throughput-Driven Parallel Embedded Software Synthesis from Synchronous Dataflow Models: Caveats and Remedies

    Pages 91-127

    Hashemi, Matin (et al.)

  • SimSoC: A Fast, Proven Faithful, Full System Virtual Prototyping Framework

    Pages 129-156

    Joloboff, Vania (et al.)

Buy this book

eBook 106,99 €
price for Spain (gross)
  • ISBN 978-3-319-47307-9
  • Digitally watermarked, DRM-free
  • Included format: EPUB, PDF
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Hardcover 135,19 €
price for Spain (gross)
  • ISBN 978-3-319-47306-2
  • Free shipping for individuals worldwide
  • Institutional customers should get in touch with their account manager
  • Covid-19 shipping restrictions
  • Usually ready to be dispatched within 3 to 5 business days, if in stock
  • The final prices may differ from the prices shown due to specifics of VAT rules
Softcover 135,19 €
price for Spain (gross)
  • ISBN 978-3-319-83705-5
  • Free shipping for individuals worldwide
  • Institutional customers should get in touch with their account manager
  • Covid-19 shipping restrictions
  • Usually ready to be dispatched within 3 to 5 business days, if in stock
  • The final prices may differ from the prices shown due to specifics of VAT rules
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Bibliographic Information

Bibliographic Information
Book Title
Model-Implementation Fidelity in Cyber Physical System Design
Editors
  • Anca Molnos
  • Christian Fabre
Copyright
2017
Publisher
Springer International Publishing
Copyright Holder
Springer International Publishing AG
eBook ISBN
978-3-319-47307-9
DOI
10.1007/978-3-319-47307-9
Hardcover ISBN
978-3-319-47306-2
Softcover ISBN
978-3-319-83705-5
Edition Number
1
Number of Pages
XII, 236
Number of Illustrations
39 b/w illustrations, 87 illustrations in colour
Topics