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Feedback utilization control in distributed real-time systems with end-to-end tasks

机译:具有端到端任务的分布式实时系统中的反馈利用控制

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An increasing number of distributed real-time systems face the critical challenge of providing quality of service guarantees in open and unpredictable environments. In particular, such systems often need to enforce utilization bounds on multiple processors in order to avoid overload and meet end-to-end deadlines even when task execution times are unpredictable. While recent feedback control real-time scheduling algorithms have shown promise, they cannot handle the common end-to-end task model where each task is comprised of a chain of subtasks distributed on multiple processors. This paper presents the end-to-end utilization control (EUCON) algorithm that adaptively maintains desired CPU utilization through performance feedbacks loops. EUCON is based on a model predictive control approach that models utilization control on a distributed platform as a multivariable constrained optimization problem. A multi-input-multi-output model predictive controller is designed based on a difference equation model that describes the dynamic behavior of distributed real-time systems. Both control theoretic analysis and simulations demonstrate that EUCON can provide robust utilization guarantees when task execution times deviate from estimation or vary significantly at runtime.
机译:越来越多的分布式实时系统面临在开放和不可预测的环境中提供服务质量保证的关键挑战。尤其是,即使任务执行时间无法预测,此类系统通常也需要在多个处理器上强制使用限制,以避免过载并满足端到端的期限。尽管最近的反馈控制实时调度算法已显示出希望,但它们无法处理通用的端到端任务模型,其中每个任务都由分布在多个处理器上的一系列子任务组成。本文提出了一种端到端利用率控制(EUCON)算法,该算法通过性能反馈循环来自适应地维持所需的CPU利用率。 EUCON基于模型预测控制方法,该方法将分布式平台上的利用率控制建模为多变量约束优化问题。基于差分方程模型设计了一种多输入多输出模型的预测控制器,该模型描述了分布式实时系统的动态行为。控制理论分析和仿真均表明,当任务执行时间偏离估计值或运行时发生显着变化时,EUCON可以提供强大的利用率保证。

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