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IMC-PnG: Maximizing runtime performance and timing guarantee for imprecise mixed-criticality real-time scheduling

Authors
Lee, JaewooLee, Jinkyu
Issue Date
Nov-2024
Publisher
Elsevier B.V.
Keywords
Imprecise computing; Mixed-Criticality Systems; Real-time Systems; Schedulability analysis; Scheduling algorithm
Citation
Future Generation Computer Systems, v.160, pp 406 - 419
Pages
14
Journal Title
Future Generation Computer Systems
Volume
160
Start Page
406
End Page
419
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/75020
DOI
10.1016/j.future.2024.06.015
ISSN
0167-739X
1872-7115
Abstract
Mixed-Criticality (MC) systems have successfully overcome the limitation of traditional real-time systems based on pessimistic Worst-Case Execution Times (WCETs), by using different WCETs depending on different criticalities. One of the important yet unsolved problems of current MC systems is to achieve two goals (G1 and G2) for low-criticality tasks without compromising timing guarantees for high-criticality tasks: (G1) providing a certain (degraded) level of timing guarantees for all low-criticality tasks; (G2) while maximizing the fully-serviced (non-degraded) execution of low-criticality tasks. To address the problem, we propose IMC-PnG, an MC scheduling framework, which employs two salient features: a task-level virtual-deadline assignment under the imprecise computing model with efficient resource utilization (supporting G1), and an online scheduling algorithm that dynamically changes criticality levels of individual tasks at runtime (supporting G2). In simulation results with random workloads, we showed that IMC-PnG has up to 12.10% higher schedulability and up to 42.10% higher runtime performance (measured by the fully-serviced ratio of low-criticality tasks) than the existing approaches. © 2024 Elsevier B.V.
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경영경제대학 (산업보안학과)
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