实时多处理器系统节能的通用框架

Gang Zeng, T. Yokoyama, H. Tomiyama, H. Takada, T. Ishihara
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引用次数: 1

摘要

为探索多处理器系统中特定应用的节能潜力,提出了一种广义动态能源性能缩放(DEPS)框架。这个以软件为中心的框架利用可能的功率控制机制来权衡性能以节省能源。该框架采用了三种现有技术,即动态硬件资源配置(DHRC)、动态电压频率缩放(DVFS)和动态电源管理(DPM),以实现最大的节能。将确定最优任务分配和DEPS配置的问题表述为整数线性规划问题。还讨论了几个实际问题,例如如何减少测量和计算时间以及如何减少配置开销。通过一个案例研究验证了DEPS的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A generalized framework for energy savings in real-time multiprocessor systems
A generalized dynamic energy performance scaling (DEPS) framework is proposed for exploring application-specific energy-saving potential in multiprocessor systems. This software-centric framework takes advantage of possible power control mechanisms to trade off performance for energy savings. Three existing technologies, i.e., dynamic hardware resource configuration (DHRC), dynamic voltage frequency scaling (DVFS), and dynamic power management (DPM), have been employed in this framework to achieve the maximal energy savings. The problem of determining the optimal task allocation and DEPS configurations is formulated as an integer linear programming (ILP) problem. Several practical issues such as how to reduce measurement and computation time and how to reduce the configuration overhead are also addressed. The effectiveness of DEPS is validated through a case study.
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