自触发控制应用的动态调度与控制质量优化

Soheil Samii, P. Eles, Zebo Peng, P. Tabuada, A. Cervin
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引用次数: 30

摘要

对于许多执行场景,时间触发的周期性控制实现被过度配置,在这些场景中,被控制工厂的状态接近平衡。为了解决这种计算资源的低效使用,研究人员提出了自触发控制方法,其中控制任务根据被控对象的状态和动态特性在运行时计算其执行期限。然而,如果没有适当的在线资源管理策略,这种控制方法的潜在优势就无法实现。本文讨论了在单处理器平台上执行的多个自触发控制任务的调度,其中优化目标是找到所有控制任务的控制性能和CPU使用之间的权衡。实验结果表明,本文提出的启发式算法在控制性能和降低CPU使用率方面都能达到较高的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Scheduling and Control-Quality Optimization of Self-Triggered Control Applications
Time-triggered periodic control implementations are over provisioned for many execution scenarios in which the states of the controlled plants are close to equilibrium. To address this inefficient use of computation resources, researchers have proposed self-triggered control approaches in which the control task computes its execution deadline at runtime based on the state and dynamical properties of the controlled plant. The potential advantages of this control approach cannot, however, be achieved without adequate online resource-management policies. This paper addresses scheduling of multiple self-triggered control tasks that execute on a uniprocessor platform, where the optimization objective is to find trade-offs between the control performance and CPU usage of all control tasks. Our experimental results show that efficiency in terms of control performance and reduced CPU usage can be achieved with the heuristic proposed in this paper.
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