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Abstract: In this paper, we introduce a parametric semantics for timed controllers called
the Almost ASAP semantics. This semantics is a relaxation of the usual ASAP semantics (also
called the maximal progress semantics) which is a mathematical idealization that can not be
implemented by any physical device no matter how fast it is. On the contrary, any correct
Almost ASAP controller can be implemented by a program on a hardware if this hardware is
fast enough. We study the properties of this... (Update)
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0.2: Correctness and Reduction in Timed Circuit Analysis - Mercer (2002)
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2: Theoretical Computer Science (context) - Alur, Dill et al. - 1994
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BibTeX entry: (Update)
Martin De Wulf, Laurent Doyen, and Jean-Franois Raskin. Almost ASAP semantics: From timed models to timed implementations. In Proc. 7th International Workshop on Hybrid Systems: Computation and Control (HSCC'04), Lecture Notes in Computer Science. Springer, 2004. To appear. http://citeseer.ist.psu.edu/dewulf03almost.html More
@misc{ wulf04almost,
author = "M. De Wulf and L. Doyen and J. Raskin",
title = "Almost ASAP semantics: From timed models to timed implementations",
text = "Martin De Wulf, Laurent Doyen, and Jean-Franois Raskin. Almost ASAP semantics:
From timed models to timed implementations. In Proc. 7th International Workshop
on Hybrid Systems: Computation and Control (HSCC'04), Lecture Notes in Computer
Science. Springer, 2004. To appear.",
year = "2004",
url = "citeseer.ist.psu.edu/dewulf03almost.html" }
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