(Enter summary)
Abstract: This paper introduces, gently but rigorously, the clock approach to realtime
programming. We present with mathematical precision, assuming no prerequisites
other than familiarity with logical and programming notations, the
concepts that are necessary for understanding, writing, and executing clock
programs. In keeping with an expository style, all references are clustered in
bibliographic remarks at the end of each section. The first appendix presents
proof rules for verifying temporal... (Update)
Context of citations to this paper: More
...t i g diverges. To restrict our attention to divergent runs, we can modify an n dimensional rectangular automaton H in a standard way [3]. We add an additional clock variable at coordinate n 1, so that the dimension becomes n 1. For each vertex 2 V , we introduce a...
...condition on time. Timed safety automata have been used extensively for the specification and verification of real time systems [6, 7, 11, 9]. It has been argued that with the explicit consideration of time, acceptance conditions are no longer useful abstractions to enforce...
Cited by: More
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The Expressive Power of Clocks - Henzinger, Kopke, Wong-Toi (1995)
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6: Logics and models of real time: a survey
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BibTeX entry: (Update)
R. Alur and T.A. Henzinger. Real-time system = discrete system + clock variables. In T. Rus, editor, Proceedings of the First AMAST Workshop on Real-time Systems, to appear. Available as Technical Report CSD-TR-94-1403, Cornell University, January 1994. http://citeseer.ist.psu.edu/alur97realtime.html More
@article{ alur97realtime,
author = "Rajeev Alur and Thomas A. Henzinger",
title = "Real-Time System = Discrete System + Clock Variables",
journal = "International Journal on Software Tools for Technology Transfer",
volume = "1",
number = "1-2",
pages = "86-109",
year = "1997",
url = "citeseer.ist.psu.edu/alur97realtime.html" }
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