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  1. Proceedings of the 5th International FME Workshop on Formal Methods in Software Engineering (FormaliSE '17)
  2. Featured weighted automata
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Efficient SAT-based software analysis: from automated testing to automated verification and repair
A model for provably secure software design
A trusted approach to design a network monitor
Using BDD and SBVR to refine business goals into an event-B model: a research idea
Modeling families of public licensing services: a case study
Correct safety critical hardware descriptions via static analysis and theorem proving
Verifying the reliability of operating system-level information flow control systems in linux
Model checking for mobile Android malware evolution
Formal verification of ROS-based robotic applications using timed-automata
A generic algorithm for program repair
Featured weighted automata
Partition-based coverage metrics and type-guided search in concolic testing for JavaScript applications

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Featured weighted automata

Content Provider ACM Digital Library
Author Legay, Axel Fahrenberg, Uli
Abstract A featured transition system is a transition system in which the transitions are annotated with feature expressions: Boolean expressions on a finite number of given features. Depending on its feature expression, each individual transition can be enabled when some features are present, and disabled for other sets of features. The behavior of a featured transition system hence depends on a given set of features. There are algorithms for featured transition systems which can check their properties for all sets of features at once, for example for LTL or CTL properties. Here we introduce a model of featured weighted automata which combines featured transition systems and (semiring-) weighted automata. We show that methods and techniques from weighted automata extend to featured weighted automata and devise algorithms to compute quantitative properties of featured weighted automata for all sets of features at once. We show applications to minimum reachability and to energy properties.
Starting Page 51
Ending Page 57
Page Count 7
File Format PDF
ISBN 9781538604229
DOI 10.1109/FormaliSE.2017..2
Language English
Publisher Association for Computing Machinery (ACM)
Publisher Date 2017-05-20
Access Restriction Subscribed
Content Type Text
Resource Type Article
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