实时嵌入式系统的反馈控制可靠性感知电源管理

R. Sridharan, Nikhil Gupta, R. Mahapatra
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引用次数: 30

摘要

在最近的文献中,有报道称动态电源管理(DPM)可能导致实时嵌入式系统可靠性下降。不断缩小的设备尺寸进一步加剧了这一问题。在本文中,我们提出了一种可靠性感知的电源管理算法,旨在降低能耗的同时保持系统的整体可靠性。所提出的方案背后的思想是利用动态松弛来缩小进程,同时确保整个系统的可靠性不会急剧降低。该算法采用比例反馈控制器来跟踪任务系统的总体缺失率,并根据需求提供额外的容错级别。在实际任务集和合成任务集上对其进行了测试,并给出了仿真结果。考虑了固定优先级调度策略和动态优先级调度策略,并对结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feedback-controlled reliability-aware power management for real-time embedded systems
In recent literature it has been reported that Dynamic Power Management (DPM) may lead to decreased reliability in real-time embedded systems. The ever-shrinking device sizes contribute further to this problem. In this paper, we present a reliability aware power management algorithm that aims at reducing energy consumption while preserving the overall system reliability. The idea behind the proposed scheme is to utilize the dynamic slack to scale down processes while ensuring that the overall system reliability does not reduce drastically. The proposed algorithm employs a proportional feedback controller to keep track of the overall miss ratio of a system of tasks and provide additional level of fault-tolerance based on demand. It was tested with both real-world and synthetic task sets and simulation results have been presented. Both fixed and dynamic priority scheduling policies have been considered for demonstration of results.
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