DocumentCode
3295620
Title
Quantitative analysis and model checking
Author
Huth, Michael ; Kwiatkowska, Marta
Author_Institution
Dept. of Comput. & Inf. Sci., Kansas State Univ., Manhattan, KS, USA
fYear
1997
fDate
29 Jun-2 Jul 1997
Firstpage
111
Lastpage
122
Abstract
Many notions of models in computer science provide quantitative information, or uncertainties, which necessitate a quantitative model checking paradigm. We present such a framework for reactive and generative systems based on a non-standard interpretation of the modal mu-calculus, where μx.φ/vx.φ are interpreted as least/greatest fired points over the infinite lattice of maps from states to the unit interval. By letting formulas denote lower bounds of probabilistic evidence of properties, the values computed by our quantitative model checker can serve as satisfactory correctness guarantees in cases where conventional qualitative model checking fails. Since fixed point iteration in this infinite domain is computationally unfeasible, we establish that the computation of fixed points may be restated as a conventional, and on average efficient, optimization problem in linear programming; this holds for a fragment of the modal mu-calculus which subsumes CTL. Our semantics induces a state equivalence which is strictly in between probabilistic bisimulation and probabilistic ready bisimulation
Keywords
formal verification; probabilistic logic; process algebra; fixed point iteration; infinite domain; infinite lattice of maps; lower bounds; modal mu-calculus; model checking; optimization problem; quantitative analysis; quantitative model checking; state equivalence; Computer science; Costs; Hardware; Information geometry; Lattices; Linear algebra; Probabilistic logic; Protocols; Tellurium; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Logic in Computer Science, 1997. LICS '97. Proceedings., 12th Annual IEEE Symposium on
Conference_Location
Warsaw
ISSN
1043-6871
Print_ISBN
0-8186-7925-5
Type
conf
DOI
10.1109/LICS.1997.614940
Filename
614940
Link To Document