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Formal Techniques, Modelling and Analysis of Timed and Fault-Tolerant Systems [electronic resource] : Joint International Conferences on Formal Modeling and Analysis of Timed Systmes, FORMATS 2004, and Formal Techniques in Real-Time and Fault -Tolerant Systems, FTRTFT 2004, Grenoble, France, September 22-24, 2004. Proceedings / edited by Yassine Lakhnech, Sergio Yovine.

Contributor(s): Material type: TextTextSeries: Lecture Notes in Computer Science ; 3253Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2004Description: X, 402 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783540302063
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 005.1015113 23
LOC classification:
  • QA76.9.L63
  • QA76.5913
  • QA76.63
Online resources:
Contents:
Invited Papers -- From Software to Hardware and Back -- Of Elections and Electrons -- Regular Papers -- Formal Verification of an Avionics Sensor Voter Using SCADE -- Mixed Delay and Threshold Voters in Critical Real-Time Systems -- Towards a Methodological Approach to Specification and Analysis of Dependable Automation Systems -- On Two-Sided Approximate Model-Checking: Problem Formulation and Solution via Finite Topologies -- On Timed Automata with Input-Determined Guards -- Decomposing Verification of Timed I/O Automata -- Symbolic Model Checking for Simply-Timed Systems -- Robustness and Implementability of Timed Automata -- Real-Time Testing with Timed Automata Testers and Coverage Criteria -- Monitoring Temporal Properties of Continuous Signals -- A Unified Fault-Tolerance Protocol -- Automating the Addition of Fail-Safe Fault-Tolerance: Beyond Fusion-Closed Specifications -- Modeling and Verification of a Fault-Tolerant Real-Time Startup Protocol Using Calendar Automata -- Static Fault-Tolerant Real-Time Scheduling with “Pseudo-topological” Orders -- The Influence of Durational Actions on Time Equivalences -- Bounded Model Checking for Region Automata -- Some Progress in Satisfiability Checking for Difference Logic -- Model-Checking for Weighted Timed Automata -- Symbolic Model Checking for Probabilistic Timed Automata -- Structured Modeling of Concurrent Stochastic Hybrid Systems -- Computing Schedules for Multithreaded Real-Time Programs Using Geometry -- Forward Reachability Analysis of Timed Petri Nets -- Lazy Approximation for Dense Real-Time Systems -- Learning of Event-Recording Automata.
In: Springer eBooks
Item type: E-BOOKS
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Invited Papers -- From Software to Hardware and Back -- Of Elections and Electrons -- Regular Papers -- Formal Verification of an Avionics Sensor Voter Using SCADE -- Mixed Delay and Threshold Voters in Critical Real-Time Systems -- Towards a Methodological Approach to Specification and Analysis of Dependable Automation Systems -- On Two-Sided Approximate Model-Checking: Problem Formulation and Solution via Finite Topologies -- On Timed Automata with Input-Determined Guards -- Decomposing Verification of Timed I/O Automata -- Symbolic Model Checking for Simply-Timed Systems -- Robustness and Implementability of Timed Automata -- Real-Time Testing with Timed Automata Testers and Coverage Criteria -- Monitoring Temporal Properties of Continuous Signals -- A Unified Fault-Tolerance Protocol -- Automating the Addition of Fail-Safe Fault-Tolerance: Beyond Fusion-Closed Specifications -- Modeling and Verification of a Fault-Tolerant Real-Time Startup Protocol Using Calendar Automata -- Static Fault-Tolerant Real-Time Scheduling with “Pseudo-topological” Orders -- The Influence of Durational Actions on Time Equivalences -- Bounded Model Checking for Region Automata -- Some Progress in Satisfiability Checking for Difference Logic -- Model-Checking for Weighted Timed Automata -- Symbolic Model Checking for Probabilistic Timed Automata -- Structured Modeling of Concurrent Stochastic Hybrid Systems -- Computing Schedules for Multithreaded Real-Time Programs Using Geometry -- Forward Reachability Analysis of Timed Petri Nets -- Lazy Approximation for Dense Real-Time Systems -- Learning of Event-Recording Automata.

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The Institute of Mathematical Sciences, Chennai, India