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Scheduling Real-Time Mixed-Criticality Jobs

机译:安排实时混合关键任务

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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 interesting scheduling problems, that cannot be satisfactorily addressed using techniques from conventional scheduling theory. In this paper, we study a formal model for representing such mixed-criticality workloads. We demonstrate first the intractability of determining whether a system specified in this model can be scheduled to meet all its certification requirements, even for systems subject to two sets of certification requirements. Then we quantify, via the metric of processor speedup factor, the effectiveness of two techniques, reservation-based scheduling and priority-based scheduling, that are widely used in scheduling such mixed-criticality systems, showing that the latter of the two is superior to the former. We also show that the speedup factors are tight for these two techniques.
机译:许多对安全性至关重要的嵌入式系统均受认证要求的约束;某些系统可能需要满足来自不同认证机构的多套认证要求。在这种“混合临界”系统中的认证要求引起了有趣的调度问题,使用常规调度理论的技术不能令人满意地解决该问题。在本文中,我们研究了表示此类混合关键性工作负载的正式模型。我们首先证明确定该模型中指定的系统是否可以安排满足其所有认证要求的难解性,即使对于受两套认证要求约束的系统也是如此。然后,通过处理器加速因子的度量,量化了两种技术(基于预留的调度和基于优先级的调度)的有效性,这两种技术在调度此类混合关键系统中被广泛使用,表明两者中的后者优于前者。我们还表明,这两种技术的加速因素是紧密的。

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