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Schedulability Guarantees for Dependable Distributed Real-Time Systems under Error Bursts

Publication Type:

Book chapter

Venue:

Advances in Intelligent Control Systems and Computer Science

Publisher:

Springer

DOI:

10.1007/978-3-642-32548-9


Abstract

In dependable embedded real-time systems, typically built of computing nodes exchanging messages over reliability-constrained networks, the provision of schedulability guarantees for task and message sets under realistic fault and error assumptions is an essential requirement, though complex and tricky to achieve. An important factor to be considered in this context is the random nature of occurrences of faults and errors, which, if addressed in the traditional schedulability analysis by assuming a rigid worst-case occurrence scenario, may lead to inaccurate results. In this work we propose a framework for end-to-end probabilistic schedulability analysis for real-time tasks exchanging messages over Controller Area Network under stochastic errors.

Bibtex

@incollection{Aysan2807,
author = {H{\"u}seyin Aysan and Radu Dobrin and Sasikumar Punnekkat},
title = {Schedulability Guarantees for Dependable Distributed Real-Time Systems under Error Bursts},
isbn = {978-3-642-32547-2},
volume = {187},
pages = {393--406},
month = {January},
year = {2013},
booktitle = {Advances in Intelligent Control Systems and Computer Science},
publisher = {Springer},
url = {http://www.es.mdu.se/publications/2807-}
}