实时系统的混合监控利用控制

X. Koutsoukos, Radhika Tekumalla, B. Natarajan, Chenyang Lu
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引用次数: 47

摘要

反馈控制实时调度(FCS)是一种基于自适应资源管理的实时系统,其目标是满足实时系统的性能要求。现有的FCS算法往往依赖于实时系统中连续控制变量的存在。然而,许多实时系统只支持一组有限的离散配置,这些配置限制了适应机制。本文提出了一种用于此类实时系统调度的混合监督利用率控制方法(HySUCON)。HySUCON通过管理离散配置之间的切换来强制处理器利用率限制。我们的方法基于最佳优先搜索算法,仅在需要重新配置时调用该算法。理论分析和仿真结果表明,该方法对不同的执行时间具有鲁棒的利用率界限。实验结果验证了该算法在典型应用场景下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid supervisory utilization control of real-time systems
Feedback control real-time scheduling (FCS) aims at satisfying performance specifications of real-time systems based on adaptive resource management. Existing FCS algorithms often rely on the existence of continuous control variables in real-time systems. A number of real-time systems, however, support only a finite set of discrete configurations that limit the adaptation mechanisms. This paper presents hybrid supervisory utilization control (HySUCON) for scheduling such real-time systems. HySUCON enforces processor utilization bounds by managing the switchings between the discrete configurations. Our approach is based on a best-first-search algorithm that is invoked only if reconfiguration is necessary. Theoretical analysis and simulations demonstrate that the approach leads to robust utilization bounds for varying execution times. Experimental results demonstrate the algorithm performance for a representative application scenario.
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