The Inverse Method - Parametric Verification of Real-Time Embedded Systems - Grand Format

Edition en anglais

Etienne André

,

Romain Soulat

Note moyenne 
This book introduces state-of-the-art verification techniques for real-time embedded systems, based on the inverse method for parametric timed automata.... Lire la suite
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Résumé

This book introduces state-of-the-art verification techniques for real-time embedded systems, based on the inverse method for parametric timed automata. It reviews popular formalisms for the specification and verification of timed concurrent systems and, in particular, timed automata as well as several extensions such as timed automata equipped with stopwatches, linear hybrid automata and affine hybrid automata.
The inverse method is introduced, and its benefits for guaranteeing robustness in real-time systems are shown. Then, it is shown how an iteration of the inverse method can solve the good parameters problem for parametric timed automata by computing a behavioral cartography of the system. Different extensions are proposed particularly for hybrid systems and applications to scheduling problems using timed automata with stopwatches.
Various examples, both from the literature and industry, illustrate the techniques throughout the book. Various parametric verifications are performed, in particular of abstractions of a memory circuit sold by the chipset manufacturer ST-Microelectronics, as well as of the prospective flight control system of the next generation of spacecraft designed by Astrium Space Transportation.

Caractéristiques

  • Date de parution
    04/03/2013
  • Editeur
  • Collection
    Focus Series in Computer Engin
  • ISBN
    978-1-84821-447-7
  • EAN
    9781848214477
  • Format
    Grand Format
  • Présentation
    Relié
  • Nb. de pages
    150 pages
  • Poids
    0.625 Kg
  • Dimensions
    16,0 cm × 24,0 cm × 2,0 cm

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À propos des auteurs

Etienne André is Associate Professor in the Laboratoire d'Informatique de Paris Nord, in the University of Paris 13 (Sorbonne Paris Cité) in France. His current research interests focus on the verification of real-time systems. Romain Soulat is currently completing his PhD at the LSV laboratory at ENS-Cachan in France, focusing on the modeling and verification of hybrid temporal systems.

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