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Schedulability Analysis of DeferrableScheduling Algorithms for MaintainingReal-Time Data Freshness

机译:保持实时数据新鲜度的Deferrable调度算法的可调度性分析

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Although the deferrable scheduling algorithm for fixed priority transactions ( DS-FP) has been shown to provide a better performance compared with the More-Less (ML) method, there is still a lack of any comprehensive studies on the necessary and sufficient conditions for the schedulability of DS-FP. In this paper, we first analyze the necessary and sufficient schedulability conditions for DS-FP, and then propose a schedulability test algorithm for DS-FP by exploiting the fact that there always exists a repeating pattern in a DS-FP schedule. To resolve the limitation of fixed priority scheduling in DS-FP, we then extend the deferrable scheduling to a dynamic priority scheduling algorithm called DS-EDF by applying the earliest deadline first (EDF) policy to schedule update jobs. We also propose a schedulability test for DS-EDF and compare its performance with DS-FP and ML through extensive simulation experiments. The results show that the schedulability tests are effective. Although the schedulability of DS-EDF is lower than DS-FP and the repeating patterns in DS-EDF schedules are longer than those in DS-FP due to the use of dynamic priority scheduling, the performance of DS-EDF is better than both DS-FP and ML in terms of CPU utilization and impact on lower priority application transactions.
机译:尽管已显示固定优先级事务的可延迟调度算法(DS-FP)与“更少”(ML)方法相比提供了更好的性能,但仍缺乏对解决方案的必要条件和充分条件的任何全面研究。 DS-FP的可调度性。在本文中,我们首先分析了DS-FP的必要和充分的可调度性条件,然后利用DS-FP调度中始终存在重复模式的事实,提出了DS-FP的可调度性测试算法。为了解决DS-FP中固定优先级调度的局限性,我们然后通过应用最早的截止时间优先(EDF)策略来调度更新作业,将可延迟调度扩展到称为DS-EDF的动态​​优先级调度算法。我们还提出了针对DS-EDF的可调度性测试,并通过广泛的模拟实验将其性能与DS-FP和ML进行了比较。结果表明,可调度性测试是有效的。尽管由于使用动态优先级调度,DS-EDF的可调度性低于DS-FP,并且DS-EDF调度中的重复模式比DS-FP中的重复模式长,但DS-EDF的性能优于两个DS -FP和ML在CPU利用率方面以及对优先级较低的应用程序事务的影响。

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