分布式实时系统监控边界的推导

M. Neukirchner, S. Stein, R. Ernst
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引用次数: 0

摘要

运行时控制器可以在分布式嵌入式系统中使用,以限制或停止软件组件,从而通过调度依赖限制应用程序对彼此的定时影响。这种运行时控制器需要每个任务的最坏情况允许资源利用率的界限,以估计和控制应用程序之间的最坏情况干扰。多维灵敏度分析可以从全局系统约束中得到有效的局部控制器边界。本文提出了一种新的分布式算法来确定激活抖动的多维灵敏度界。分布使其适合于模块化设计的现场应用,这是许多工业应用的主要要求。它的性质是正式推导出来的。大量的实验评估了解的质量和计算时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deriving Monitoring Bounds for Distributed Real-Time Systems
Runtime controllers can be used in distributed embedded systems to throttle or stop software components and thus to limit the timing effects that applications have on each other through scheduling dependencies. Such runtime controllers require bounds on the worst-case admissible resource utilization per task to estimate and to control the worst-case interference between applications. Multi-dimensional sensitivity analysis can be used to derive efficient local controller bounds from global system constraints. In this paper we present a novel distributed algorithm to determine a multi-dimensional sensitivity bound on activation jitter which serves that purpose. Distribution makes it suitable for in-field application in modular designs, a main requirement in many industrial applications. Its properties are formally derived. Extensive experiments evaluate the solution quality and computation time.
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