Formal methods for real-time and probabilistic systems : 5th International AMAST Workshop, ARTS'99, Bamberg, Germany, May 26-28, 1999 : proceedings / Joost-Pieter Katoen (ed.)
This book constitutes the refereed proceedings of the Fifth International AMAST Workshop on Formal Methods for Real-Time and Probabilistic Systems, ARTS '99, held in Bamberg, Germany in May 1999. The 17 revised full papers presented together with three invited contributions were carefully revie...
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Format: | Conference Proceeding eBook |
Language: | English |
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New York :
Springer,
©1999.
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Series: | Lecture notes in computer science ;
1601. |
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Table of Contents:
- Invited Lecture
- Fully Abstract Characterization of Probabilistic May Testing
- Verification of Probabilistic System
- Quantitative Program Logic and Performance in Probabilistic Distributed Algorithms
- Establishing Qualitative Properties for Probabilistic Lossy Channel Systems
- Root Contention in IEEE 1394
- Model Checking Probabilistic Systems
- Automatic Verification of Real-Time Systems with Discrete Probability Distributions
- ProbVerus: Probabilistic Symbolic Model Checking
- Semantics of Probabilistic Process Calculi
- Process Algebra with Probabilistic Choice
- An Axiomatization of Probabilistic Testing
- Invited Lecture
- Verification of Hybrid Systems
- Semantics of Real-Time Processes
- A Parallel Operator for Real-Time Processes with Predicate Transformer Semantics
- Comparing the Efficiency of Asynchronous Systems
- Real-Time Compilation
- A Formal Model of Real-Time Program Compilation
- Stochastic Process Algebra
- Specifying Performance Measures for PEPA
- Semi-numerical Solution of Stochastic Process Algebra Models
- Bisimulation Algorithms for Stochastic Process Algebras and Their BDD-Based Implementation
- Invited Lecture
- Probabilistic Linear-Time Model Checking: An Overview of the Automata-Theoretic Approach
- Modeling and Verification of Real-Time Systems
- Formal Verification of a Power Controller Using the Real-Time Model Checker Uppaal
- Verifying Progress in Timed Systems
- Proof Assistance for Real-Time Systems Using an Interactive Theorem Prover
- Modelling Timeouts without Timelocks.