English

Utilization-Based Scheduling of Flexible Mixed-Criticality Real-Time Tasks

Distributed, Parallel, and Cluster Computing 2017-11-02 v1

Abstract

Mixed-criticality models are an emerging paradigm for the design of real-time systems because of their significantly improved resource efficiency. However, formal mixed-criticality models have traditionally been characterized by two impractical assumptions: once \textit{any} high-criticality task overruns, \textit{all} low-criticality tasks are suspended and \textit{all other} high-criticality tasks are assumed to exhibit high-criticality behaviors at the same time. In this paper, we propose a more realistic mixed-criticality model, called the flexible mixed-criticality (FMC) model, in which these two issues are addressed in a combined manner. In this new model, only the overrun task itself is assumed to exhibit high-criticality behavior, while other high-criticality tasks remain in the same mode as before. The guaranteed service levels of low-criticality tasks are gracefully degraded with the overruns of high-criticality tasks. We derive a utilization-based technique to analyze the schedulability of this new mixed-criticality model under EDF-VD scheduling. During runtime, the proposed test condition serves an important criterion for dynamic service level tuning, by means of which the maximum available execution budget for low-criticality tasks can be directly determined with minimal overhead while guaranteeing mixed-criticality schedulability. Experiments demonstrate the effectiveness of the FMC scheme compared with state-of-the-art techniques.

Keywords

Cite

@article{arxiv.1711.00100,
  title  = {Utilization-Based Scheduling of Flexible Mixed-Criticality Real-Time Tasks},
  author = {Gang Chen and Nan Guan and Di Liu and Qingqiang He and Kai Huang and Todor Stefanov and Wang Yi},
  journal= {arXiv preprint arXiv:1711.00100},
  year   = {2017}
}

Comments

This paper has been submitted to IEEE Transaction on Computers (TC) on Sept-09th-2016

R2 v1 2026-06-22T22:32:14.561Z