JMC : Jitter-based mixed-criticality scheduling for distributed real-time systemsJMC : 실시간 분산 시스템을 위한 지터 기반의 혼합 임계 스케줄링 기법

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These days, the term of Internet of Things (IoT) becomes popular to interact and cooperate with individual smart objects, and one of the most critical challenges for IoT is to achieve efficient resource sharing as well as ensure safety-stringent timing constraints. To design such reliable real-time IoT, this paper focuses on the concept of mixed-criticality (MC) introduced to address the low processor utilization on traditional real-time systems. Although different worst-case execution time estimates depending on criticality are proven effective on processor scheduling, the MC concept is not yet mature on distributed systems (such as IoT), especially with end-to-end deadline guarantee. To the best of our knowledge, this paper presents the first attempt to apply the MC concept into interference (or jitter), which is acomplicated source of pessimism when analyzing the schedulability of distributed systems. Our goalis to guarantee the end-to-end deadlines of high-criticality flows and minimize the deadline miss ratioof low-criticality flows in distributed systems. To achieve this goal, we introduce JMC, a jitter-basedMC scheduling framework, which supports node-level mode changes in distributed systems. We present an optimal feasibility condition (subject to given schedulability analysis) and two policies to determine jitter-threshold values to achieve the goal in different conditions. Via simulation results for randomly-generated workloads,JMC outperforms an existing criticality-monotonic scheme in terms of achieving higher schedulability and fewer deadline misses.
Advisors
Shin, Insikresearcher신인식researcher
Description
한국과학기술원 :전산학부,
Publisher
한국과학기술원
Issue Date
2019
Identifier
325007
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 전산학부, 2019.8,[iii, 31 p. :]

Keywords

Distributed real-time systems▼ajitter-based mixed-criticality scheduling▼aend-to-end deadline guarantee▼aworst-case response time; 실시간 분산 시스템▼a지터 기반의 혼합 임계 스케줄링▼a엔드 투 엔드 데드라인 보장▼a최악의 경우 응답 시간

URI
http://hdl.handle.net/10203/283083
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=875459&flag=dissertation
Appears in Collection
CS-Theses_Master(석사논문)
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