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Utilization-Tensity Bound for Real-Time DAG Tasks under Global EDF Scheduling

机译:在全球EDF调度下的实时DAG任务的利用率 - 绑定

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摘要

Utilization bound is a well-known concept in real-time scheduling theory for sequential periodic tasks, which can be used both for quantifying the performance of scheduling algorithms and as efficient schedulability tests. However, the schedulability of parallel real time task graphs depends on not only utilization, but also another parameter tensity, the ratio between the longest path length and period. In this paper, we use utilization-tensity bounds to better characterize the schedulability of parallel real-time tasks. In particular, we derive utilization-tensity bounds for parallel DAG tasks under global EDF scheduling, which facilitate significantly more precise schedulability analysis than the state-of-the-art analysis techniques based on capacity augmentation bound and response time analysis. Moreover, we apply the above results to the federated scheduling paradigm to improve the system schedulability by choosing proper scheduling strategies for tasks with different workload and structure features.
机译:利用界限是用于顺序周期性任务的实时调度理论中的众所周知的概念,其都可以用于量化调度算法的性能和高效的调度性测试。然而,并行实时任务图的调度性不仅取决于利用率,而且还取决于其他参数张力,路径长度和周期之间的比率。在本文中,我们使用利用率 - 张力界限来更好地表征并行实时任务的调度性。特别是,我们在全球EDF调度下导出用于并行DAG任务的利用率 - 粘度界限,其基于容量增强绑定和响应时间分析,促进了比最先进的分析技术更精确的调度分析。此外,我们将上述结果应用于联合调度范例,以通过选择具有不同工作量和结构特征的任务的正确调度策略来提高系统调度性。

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