控制回路执行计划的性能驱动后处理

Sumana Ghosh, Soumyajit Dey, P. Dasgupta
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引用次数: 0

摘要

将各种嵌入式功能映射到共享电子控制单元上的需求日益增长,这带来了协同设计控制任务及其调度的新方法。这些技术用新方法取代了传统的控制实现,例如基于模式的控制任务调度,以及通过编排其执行模式在控制循环之间自适应地共享带宽。在目前的控制设计实践中,一旦为控制任务准备好了静态执行计划,就不会为了提高控制性能而进一步进行与控制相关的优化。我们首次引入了一种算法机制,通过强制在多个控制律之间切换来重新设计循环控制任务,这些控制律旨在补偿控制任务连续执行之间的不均匀间隔。我们确定这种控制任务调度的后处理可能有助于改善在共享平台上执行的共调度控制循环的组合控制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance-Driven Post-Processing of Control Loop Execution Schedules
The increasing demand for mapping diverse embedded features onto shared electronic control units has brought about novel ways to co-design control tasks and their schedules. These techniques replace traditional implementations of control with new methods, such as pattern-based scheduling of control tasks and adaptive sharing of bandwidth among control loops through orchestration of their execution patterns. In the current practice of control design, once the static execution schedule is prepared for control tasks, no further control-related optimization is attempted for improving the control performance. We introduce, for the first time, an algorithmic mechanism that re-engineers a recurrent control task by enforcing switching between multiple control laws, which are designed for compensating the non-uniform gaps between successive executions of the control task. We establish that such post-processing of control task schedules may potentially help in improving the combined control performance of the co-scheduled control loops that are executing on a shared platform.
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