The integration of deadline and criticalness in hard real-time scheduling

S. Biyabani, J. Stankovic, K. Ramamritham
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引用次数: 131

Abstract

Two task-scheduling algorithms for distributed hard real-time computer systems are presented. Both algorithms are based on a heuristic approach and explicitly account for both the deadlines and criticality of tasks when making scheduling decisions. In analyzing the algorithms, a performance metric called the weighted guarantee ratio is defined. It reflects both the percentage of tasks that make their deadlines and their relative worth to the system. The performance is analyzed by simulating the behavior of the algorithms as well as that of several other pertinent baseline algorithms under a wide range of system conditions including a nonhomogeneous task arrival rate. The results show that the algorithms outperform all the baseline algorithms except for the ideal but impractical centralized baseline and in many cases perform close to the ideal.<>
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硬实时调度中截止日期和关键时刻的集成
提出了两种适用于分布式硬实时计算机系统的任务调度算法。这两种算法都基于启发式方法,并在制定调度决策时明确地考虑任务的最后期限和重要性。在分析算法时,定义了一个称为加权保证比的性能指标。它既反映了完成截止日期的任务的百分比,也反映了它们对系统的相对价值。通过模拟算法的行为以及其他一些相关基线算法在广泛的系统条件下的行为来分析性能,包括非均匀任务到达率。结果表明,除了理想但不切实际的集中式基线外,该算法优于所有基线算法,并且在许多情况下性能接近理想。
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