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Realistic energy modeling of scheduling, interprocess-communication and context switch routines

机译:调度,进程间通信和上下文切换例程的逼真的能源建模

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In this study, we introduce an approach about how to model energy and power consumption of embedded systems running operating system (OS). The embedded OS provides an abstraction layer to applicative tasks through system calls to exploit the hardware device resources. We interest in characterizing the energy overhead of the embedded OS services. The remainder of this article details the approaches used to determine energy and power overheads of a set of basic services of the embedded OS: scheduling, context switch and inter-process communication. We analyze the impact of a set of parameters like processor frequency and scheduling policy on the energy consumption. Then, we extract models and laws of these overheads. In our experiments, the hardware platform used is OMAP35x EVM board running Linux omap as operating system.
机译:在本研究中,我们介绍一种有关如何对运行操作系统(OS)的嵌入式系统的能耗和功耗进行建模的方法。嵌入式操作系统通过系统调用来利用硬件设备资源,为应用任务提供了一个抽象层。我们感兴趣的是表征嵌入式OS服务的能源开销。本文的其余部分详细介绍了用于确定嵌入式OS的一组基本服务的能源和功率开销的方法:调度,上下文切换和进程间通信。我们分析了一组参数(如处理器频率和调度策略)对能耗的影响。然后,我们提取这些间接费用的模型和定律。在我们的实验中,使用的硬件平台是运行Linux omap作为操作系统的OMAP35x EVM板。

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