We present a component algebra and an associated logic for heterogeneous timed systems that can be interconnected at run time. The components of the algebra are asynchronous networks of processes, where processes are sets of traces that model the behaviour of the software applications or devices that are interconnected and execute according to the clock granularity of the network node in which they are placed. The advantage of a trace-based model is that it abstracts from the specificities of the different classes of automata that can be chosen as models of implementations and characterises at a higher level the topological properties of the languages generated by such automata that support several compositionality results; in the paper, su...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
We present a component algebra and an associated logic for heterogeneous timed systems that can be i...
We present a component algebra and an associated logic for heterogeneous timed systems that can be i...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
Abstract. We present a component algebra and an associated logic for heteroge-nous timed systems. Th...
International audienceWe present an algebra of discrete timed input/output au- tomata that execute i...
International audienceWe present an algebra of discrete timed input/output au- tomata that execute i...
Part 8: Session 7: Distribution and ConcurrencyInternational audienceWe present a component algebra ...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
We present a component algebra and an associated logic for heterogeneous timed systems that can be i...
We present a component algebra and an associated logic for heterogeneous timed systems that can be i...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
We present a component algebra and an associated logic for heterogenous timed systems. The component...
Abstract. We present a component algebra and an associated logic for heteroge-nous timed systems. Th...
International audienceWe present an algebra of discrete timed input/output au- tomata that execute i...
International audienceWe present an algebra of discrete timed input/output au- tomata that execute i...
Part 8: Session 7: Distribution and ConcurrencyInternational audienceWe present a component algebra ...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
We present an algebra of discrete timed input/output automata that may execute in the context of dif...
International audienceWe present an algebra of discrete timed input/output automata that may execute...
International audienceWe present an algebra of discrete timed input/output automata that may execute...