The ntcc calculus is a model of non-deterministic temporal concurrent constraint programming. In this paper we study behavioral notions for this calculus. In the underlying computational model, concurrent constraint processes are executed in discrete time intervals. The behavioral notions studied reflect the reactive interactions between concurrent constraint processes and their environment, as well as internal interactions between individual processes. Relationships between the suggested notions are studied, and they are all proved to be decidable for a substantial fragment of the calculus. Furthermore, the expressive power of this fragment is illustrated by examples
AbstractSynchronous programming (Berry, 1989) is a powerful approach to programming reactive systems...
AbstractWe study a timed concurrent constraint language, called tccp, which is obtained by a natural...
AbstractThe timed concurrent constraint programming language (tccp in short) was introduced for mode...
The tcc model is a formalism for reactive concurrent constraint programming. In this paper we propos...
Abstract. The ntcc calculus is a model of temporal concurrent con-straint programming with the capab...
AbstractIn this paper we present an approach to model concurrent systems specified in a temporal con...
AbstractConcurrent Constraint Programming (ccp) is a model for concurrency where agents interact wit...
AbstractIn this paper we present our first approach to model and verify biological systems using ntc...
In this paper we present an approach to model concurrent systems specified in a temporal concurrent ...
International audienceConcurrent Constraint Programming (ccp) is a model for concurrency where agent...
Synchronous programming (Berry (1989)) is a powerful approach to programming reactive systems. Follo...
Concurrent constraint programming (CCP) has emerged as a simple but powerful paradigm for concurrent...
Concurrent Constraint Programming (CCP) is a formalism for concurrency in which agents (processes) i...
In this paper we present an approach to model concurrent systems speci ed in a temporal concurrent c...
AbstractThe tcc paradigm is a formalism for timed concurrent constraint programming. Several tcc lan...
AbstractSynchronous programming (Berry, 1989) is a powerful approach to programming reactive systems...
AbstractWe study a timed concurrent constraint language, called tccp, which is obtained by a natural...
AbstractThe timed concurrent constraint programming language (tccp in short) was introduced for mode...
The tcc model is a formalism for reactive concurrent constraint programming. In this paper we propos...
Abstract. The ntcc calculus is a model of temporal concurrent con-straint programming with the capab...
AbstractIn this paper we present an approach to model concurrent systems specified in a temporal con...
AbstractConcurrent Constraint Programming (ccp) is a model for concurrency where agents interact wit...
AbstractIn this paper we present our first approach to model and verify biological systems using ntc...
In this paper we present an approach to model concurrent systems specified in a temporal concurrent ...
International audienceConcurrent Constraint Programming (ccp) is a model for concurrency where agent...
Synchronous programming (Berry (1989)) is a powerful approach to programming reactive systems. Follo...
Concurrent constraint programming (CCP) has emerged as a simple but powerful paradigm for concurrent...
Concurrent Constraint Programming (CCP) is a formalism for concurrency in which agents (processes) i...
In this paper we present an approach to model concurrent systems speci ed in a temporal concurrent c...
AbstractThe tcc paradigm is a formalism for timed concurrent constraint programming. Several tcc lan...
AbstractSynchronous programming (Berry, 1989) is a powerful approach to programming reactive systems...
AbstractWe study a timed concurrent constraint language, called tccp, which is obtained by a natural...
AbstractThe timed concurrent constraint programming language (tccp in short) was introduced for mode...