[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
10.1109/CSE.2013.111guideproceedingsArticle/Chapter ViewAbstractPublication PagesConference Proceedingsacm-pubtype
Article

A New RTA Based Scheduling Algorithm for Mixed-Criticality Systems

Published: 03 December 2013 Publication History

Abstract

An increasing trend in many safety-critical embedded system is to integrate multiple functional components into a shared hardware platform for better cost and power efficiency. This mixed criticality system offers challenges both for static schedulability analysis and run-time monitoring. In prior works, many papers studied the response-time analysis (RTA) scheduling of mixed criticality systems with dual-criticality levels. But in the real embedded systems, the criticality levels of the systems are always greater than two. In this paper we proposed a novel sufficient response-time analysis and optimal priority assignment scheme for fixed priority uniprocessor scheduling of mixed criticality system with arbitrary number of criticality levels. Evaluations illustrate the effectiveness of the scheme.

Recommendations

Comments

Please enable JavaScript to view thecomments powered by Disqus.

Information & Contributors

Information

Published In

cover image Guide Proceedings
CSE '13: Proceedings of the 2013 IEEE 16th International Conference on Computational Science and Engineering
December 2013
1355 pages
ISBN:9780769550961

Publisher

IEEE Computer Society

United States

Publication History

Published: 03 December 2013

Author Tags

  1. Mixed-Criticality
  2. Response-time analysis
  3. WCRT

Qualifiers

  • Article

Contributors

Other Metrics

Bibliometrics & Citations

Bibliometrics

Article Metrics

  • 0
    Total Citations
  • 0
    Total Downloads
  • Downloads (Last 12 months)0
  • Downloads (Last 6 weeks)0
Reflects downloads up to 08 Mar 2025

Other Metrics

Citations

View Options

View options

Figures

Tables

Media

Share

Share

Share this Publication link

Share on social media