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On Least Idle Slot First Co-scheduling of Update and Control Tasks in Real-Time Sensing and Control Systems

机译:关于实时传感和控制系统中更新和控制任务的最小空闲时隙优先调度

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Typical real-time sensing and control systems consist of a set of update tasks for installing sensor measurements from the operation environment and a set of control tasks to access to these measurements for making control decisions. Although configuring the sensors with higher sampling rates could improve the accuracy of the measurements and control quality in general, scheduling high frequent update jobs may seriously affect the schedulability of the control tasks. Missing or delaying the control tasks may severely degrade the overall control performance of the system. In this paper, instead of using the traditional periodic update model, we adopt the a periodic update model in generating update jobs for maintaining data validity. We propose an adaptive co-scheduling algorithm called Least Idle Slot First (LISF) to schedule the update tasks and control tasks with the purposes to meet the deadlines of the control tasks and maximize the quality of control (QoC) offered by the control tasks. LISF schedules the jobs in the ascending order of the number of available idle slots before their deadlines and defers the release times of update jobs as long as the corresponding data objects are maintained within the required quality. The experiment results show that LISF can effectively improve the system schedulability and the control performance in the real-time sensing and control systems.
机译:典型的实时传感和控制系统包括一组用于从操作环境安装传感器测量值的更新任务,以及一组访问这些测量值以做出控制决策的控制任务。尽管将传感器配置为具有较高的采样率通常可以提高测量的准确性和控制质量,但是安排频繁的更新作业可能会严重影响控制任务的可计划性。丢失或延迟控制任务可能会严重降低系统的总体控制性能。在本文中,我们不使用传统的定期更新模型,而是采用定期更新模型来生成用于维护数据有效性的更新作业。我们提出了一种自适应的联合调度算法,称为最小空闲时隙优先(LISF),以调度更新任务和控制任务,以期满足控制任务的期限,并最大程度地提高控制任务提供的控制质量(QoC)。 LISF按可用空闲插槽数的升序对作业进行调度,直到相应的数据对象保持在要求的质量范围内,并延迟更新作业的发布时间。实验结果表明,LISF可以有效地提高系统的可调度性和实时传感与控制系统的控制性能。

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