(Enter summary)
Abstract: Operating systems which implement a dynamic priority
mechanism are very common. Nevertheless, it is
very difficult to develop an accurate analytical model
to evaluate their performance, mainly due to the different
forms of dependency between the various constituent
parts. In this paper, we introduce a black box
modeling approach which allows us to identify and decompose
the different functions of the operating system
into elementary subsystems from which submodels
are developed. Interactions... (Update)
Context of citations to this paper: More
.... Our experiments use three scalable GSPN models: ffl Model A is used to analyze the performance of a dynamic priority operating system [11], ffl Model B is adapted from [18] and describes a multiprocessor system with failures and repairs, ffl Model C is taken from [26] and...
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S. Greiner, A. Puliafito, G. Bolch, and K.S. Trivedi. Performance evaluation of dynamic priority operating systems. In Proc. IEEE Int. Workshop on Petri Nets and Performance Models (PNPM '95), pages 241-- 250, Durham, NC, 1995. IEEE Comp. Soc. Press. http://citeseer.ist.psu.edu/article/greiner95performance.html More
@misc{ greiner95performance,
author = "S. Greiner and A. Puliafito and G. Bolch and K. Trivedi",
title = "Performance evaluation of dynamic priority operating systems",
text = "S. Greiner, A. Puliafito, G. Bolch, and K.S. Trivedi. Performance evaluation
of dynamic priority operating systems. In Proc. IEEE Int. Workshop on Petri
Nets and Performance Models (PNPM '95), pages 241-- 250, Durham, NC, 1995.
IEEE Comp. Soc. Press.",
year = "1995",
url = "citeseer.ist.psu.edu/article/greiner95performance.html" }
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