Improved Deadline Miss Models for Real-Time Systems Using Typical Worst-Case Analysis

Wenbo Xu, Zain Alabedin Haj Hammadeh, A. Kröller, R. Ernst, Sophie Quinton
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引用次数: 44

Abstract

We focus on the problem of computing tight deadline miss models for real-time systems, which bound the number of potential deadline misses in a given sequence of activations of a task. In practical applications, such guarantees are often sufficient because many systems are in fact not hard real-time. Our major contribution is a general formulation of that problem in the context of systems where some tasks occasionally experience sporadic overload. Based on this new formulation, we present an algorithm that can take into account fine-grained effects of overload at the input of different tasks when computing deadline miss bounds. Finally, we show in experiments with synthetic as well as industrial data that our algorithm produces bounds that are much tighter than in previous work, in sufficiently short time.
利用典型最坏情况分析改进实时系统的最后期限缺失模型
我们专注于计算实时系统的严格截止日期错过模型的问题,该模型在给定的任务激活序列中限定了潜在的截止日期错过的数量。在实际应用中,这样的保证通常是足够的,因为许多系统实际上不是硬实时的。我们的主要贡献是在某些任务偶尔经历零星过载的系统背景下对该问题进行一般性表述。在此基础上,我们提出了一种算法,该算法可以在计算截止日期遗漏界限时考虑不同任务输入时过载的细粒度影响。最后,我们在合成和工业数据的实验中表明,我们的算法在足够短的时间内产生的边界比以前的工作要严格得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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