Energy-efficient real-time task scheduling with temperature-dependent leakage

Chuan-Yue Yang, Jian-Jia Chen, L. Thiele, Tei-Wei Kuo
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引用次数: 57

Abstract

Leakage power consumption contributes significantly to the overall power dissipation for systems that are manufactured in advanced deep sub-micron technology. Different from many previous results, this paper explores leakageaware energy-efficient scheduling if leakage power consumption depends on temperature. We propose a pattern-based approach which divides a given time horizon into several time segments with the same length, where the processor is in the active (dormant, respectively) mode for a fixed amount of time at the beginning (end, respectively) of each time segment. Computation is advanced in the active mode, whereas the dormant mode helps reduce the temperature via cooling as well as the leakage power consumption. Since the pattern-based approach leads to a steady state with an equilibrium temperature, we develop a procedure to find the optimal pattern whose energy consumption in steady state is the minimum. Compared to existing work, our approach is more effective, has less run-time scheduling overhead, and requires only a simple scheduler to control the system mode periodically. The paper contains extensive simulation results which validate the new models and methods.
具有温度相关泄漏的节能实时任务调度
泄漏功耗对采用先进深亚微米技术制造的系统的总体功耗有很大影响。与以往的许多研究结果不同,本文研究了泄漏功耗取决于温度的泄漏感知节能调度。我们提出了一种基于模式的方法,该方法将给定的时间范围划分为具有相同长度的几个时间段,其中处理器在每个时间段的开始(结束)分别处于活动(休眠)模式的固定时间。在活动模式下,计算是先进的,而休眠模式有助于通过冷却降低温度以及泄漏功耗。由于基于模式的方法会导致具有平衡温度的稳态,因此我们开发了一个程序来寻找稳态能量消耗最小的最佳模式。与现有的工作相比,我们的方法更有效,运行时调度开销更少,并且只需要一个简单的调度程序来周期性地控制系统模式。本文包含大量的仿真结果,验证了新模型和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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