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L. Aceto

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3

I&C Journal 1994 Journal Article

Adding Action Refinement to a Finite Process Algebra

  • L. Aceto
  • M. Hennessy

In this paper we present a Process Algebra for the specification of concurrent, communicating processes which incorporates operators for the refinement of actions by processes, in addition to the usual operators for communication, nondeterminism, internal actions, and restrictions, and study a suitable notion of semantic equivalence for it. We argue that action refinements should not, in some formal sense, interfere with the internal evolution of processes and their application to processes should consider the restriction operator as a "binder. " We show that, under the above assumptions, the weak version of the refine equivalence introduced by Aceto and Hennessy ((1993) Inform. and Comput. 103, 204-269) is preserved by action refinements and, moreover, is the largest such equivalence relation contained in weak bismulation equivalence. We also discuss an example showing that, contrary to what happens in Aceto and Hennessy ((1993) Inform. and Comput. 103, 204-269), refine equivalence and timed equivalence are different notions of equivalence over the language considered in this paper.

I&C Journal 1994 Journal Article

Turning SOS Rules into Equations

  • L. Aceto
  • B. Bloom
  • F. Vaandrager

Many process algebras are defined by structural operational semantics (SOS). Indeed, most such definitions are nicely structured and fit the GSOS format of Bloom et al. (J. Assoc. Comput. Mach. , to appear). We give a procedure for converting any GSOS language definition to a finite complete equational axiom system (possibly with one infinitary induction principle) which precisely characterizes strong bisimulation of processes.

I&C Journal 1993 Journal Article

Towards Action-Refinement in Process Algebras

  • L. Aceto
  • M. Hennessy

We present a simple process algebra which supports a form of refinement of an action by a process and address the question of an appropriate equivalence relation for it. The main result of the paper is that an adequate equivalence can be defined in a very intuitive manner. In fact we show that it coincides with the timed-equivalence proposed by one of the authors. We also show that it can be characterized equationally.

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