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A DVS-assisted hard real-time I/O device scheduling algorithm

机译:DVS辅助的硬实时I / O设备调度算法

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摘要

The I/O subsystem has become a major source of energy consumption in a hard real-time monitoring and control system. To reduce its energy consumption without missing deadlines, a dynamic power management (DPM) policy must carefully consider the power parameters of a device, such as its break-even time and wake-up latency, when switching off idle devices. This problem becomes extremely complicated when dynamic voltage scaling (DVS) is applied to change the execution time of a task. In this paper, we present COLORS, a composite low-power scheduling framework that includes DVS in a DPM policy to maximize the energy reduction on the I/O subsystem. COLORS dynamically predicts the earliest-access time of a device and switches off idle devices. It makes use of both static and dynamic slack time to extend the execution time of a task by DVS, in order to create additional switch-off opportunities. Task workloads, processor profiles, and device characteristics all impact the performance of a low-power real-time algorithm. We also identify a keyrnmetric that primarily determines its performance. The experimental results show that, compared with previous work, COLORS achieves additional energy reduction up to 20%, due to the efficient utilization of slack time.
机译:在硬实时监控系统中,I / O子系统已成为能耗的主要来源。为了减少能耗,同时又不丢失最后期限,动态电源管理(DPM)策略在关闭空闲设备时必须仔细考虑设备的电源参数,例如收支平衡时间和唤醒延迟。当应用动态电压缩放(DVS)来更改任务的执行时间时,此问题变得极为复杂。在本文中,我们介绍了COLORS,这是一个复合式低功耗调度框架,在DPM策略中包括DVS,以最大程度地降低I / O子系统的能耗。 COLORS可动态预测设备的最早访问时间并关闭空闲设备。它利用静态和动态的松弛时间来延长DVS的任务执行时间,从而创造更多的关闭机会。任务工作负载,处理器配置文件和设备特性都会影响低功耗实时算法的性能。我们还确定了主要确定其性能的关键指标。实验结果表明,与以前的工作相比,由于有效利用了闲置时间,COLORS的能耗最多可降低20%。

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