认证
计算机科学
混合临界
临界性
调度(生产过程)
预订
分布式计算
可靠性工程
计算机网络
工程类
政治学
运营管理
物理
核物理学
法学
作者
Sanjoy Baruah,Haohan Li,Leen Stougie
摘要
Many safety-critical embedded systems are subject to certification requirements; some systems may be required to meet multiple sets of certification requirements, from different certification authorities. Certification requirements in such "mixed-criticality" systems give rise to some interesting scheduling problems, that cannot be satisfactorily addressed using techniques from conventional scheduling theory. In this paper, we propose a formal model for representing such mixed-criticality workloads. We demonstrate the intractability of determining whether a system specified in this model can be scheduled to meet all its certification requirements. For dual-criticality systems - systems subject to two sets of certification requirements - we quantify, via the metric of processor speedup factor, the effectiveness of 2 techniques (reservation-based scheduling and priority-based scheduling) that are widely used in scheduling such mixed-criticality systems.
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