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DEUCON: Decentralized End-to-End Utilization Control for Distributed Real-Time Systems

机译:DEUCON:分布式实时系统的分散式端到端使用控制

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Many real-time systems must control their CPU utilizations in order to meet end-to-end deadlines and prevent overload. Utilization control is particularly challenging in distributed real-time systems with highly unpredictable workloads and a large number of end-to-end tasks and processors. This paper presents the Decentralized End-to-end Utilization CONtrol (DEUCON) algorithm, which can dynamically enforce the desired utilizations on multiple processors in such systems. In contrast to centralized control schemes adopted in earlier works, DEUCON features a novel decentralized control structure that requires only localized coordination among neighbor processors. DEUCON is systematically designed based on recent advances in distributed model predictive control theory. Both control-theoretic analysis and simulations show that DEUCON can provide robust utilization guarantees and maintain global system stability despite severe variations in task execution times. Furthermore, DEUCON can effectively distribute the computation and communication cost to different processors and tolerate considerable communication delay between local controllers. Our results indicate that DEUCON can provide a scalable and robust utilization control for large-scale distributed real-time systems executing in unpredictable environments.
机译:许多实时系统必须控制其CPU利用率,以便满足端到端的期限并防止过载。在具有高度不可预测的工作负载以及大量端到端任务和处理器的分布式实时系统中,使用控制尤其具有挑战性。本文提出了分散式端到端利用率控制(DEUCON)算法,该算法可以在此类系统中的多个处理器上动态实施所需的利用率。与早期工作中采用的集中控制方案相比,DEUCON具有新颖的分散控制结构,该结构仅需要在相邻处理器之间进行局部协调。 DEUCON是基于分布式模型预测控制理论的最新进展而系统设计的。控制理论分析和仿真均表明,尽管任务执行时间有很大差异,DEUCON仍可提供强大的利用率保证并保持全局系统稳定性。此外,DEUCON可以有效地将计算和通信成本分配给不同的处理器,并可以承受本地控制器之间的大量通信延迟。我们的结果表明DEUCON可以为在不可预测的环境中执行的大规模分布式实时系统提供可扩展且强大的利用率控制。

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