• DocumentCode
    588081
  • Title

    Rigorous design of cyber-physical systems

  • Author

    Sifakis, Joseph

  • Author_Institution
    EPFL & Verimag Lab., France
  • fYear
    2012
  • fDate
    16-19 July 2012
  • Firstpage
    319
  • Lastpage
    319
  • Abstract
    Cyber-physical systems (CPS) break with traditional systems such as desktop computers and servers, in various ways: (1) they are instrumented in order to interact with physical environments; (2) they are interconnected to allow interaction between people and objects in entirely new modes; (3) they must be smart to ensure predictability of events and optimal use of resources. Currently, we lack theory methods and tools for building cost-effectively trustworthy CPS. In this talk, I will show how and why CPS challenge our capabilities for ensuring their trustworthiness. I will advocate for a coherent scientific foundation of CPS design and will discuss three main scientific challenges: (1) Marrying physicality and computation; (2) Correctness-by-construction; (3) Adaptivity. Meeting these challenges is a prerequisite for moving from empirical to rigorous design. This can be formalized as a sound, scalable and accountable process leading to trustworthy and optimized implementations from: (1) an application software; (2) models of its execution infrastructure; and (3) models of its physical environment. Soundness is achieved through translation of the languages used along the design process into a single and expressive host language rooted in clean operational semantics. Scalability and accountability can be ensured by using correct-by-construction source-to-source transformations in the host language. The talk will conclude with an overview of the BIP rigorous design flow developed at Verimag and EPFL.
  • Keywords
    cybernetics; human computer interaction; language translation; program interpreters; trusted computing; BIP design; EPFL; Verimag; accountability; adaptivity; application software; coherent scientific foundation; correct-by-construction source-to-source transformations; cost-effective trustworthy CPS; cyber-physical system design; event predictability; execution infrastructure models; host language translation; operational semantics; optimal resource usage; physical environment interaction; physical environment models; physicality; scalability; Abstracts; Adaptation models; Computational modeling; Computers; Instruments; Laboratories; Servers;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Embedded Computer Systems (SAMOS), 2012 International Conference on
  • Conference_Location
    Samos
  • Print_ISBN
    978-1-4673-2295-9
  • Electronic_ISBN
    978-1-4673-2296-6
  • Type

    conf

  • DOI
    10.1109/SAMOS.2012.6404193
  • Filename
    6404193