实时嵌入式系统的能耗优化

Xuefeng Piao, Heeheon Kim, Yookun Cho, Moonju Park, Sangchul Han, Minkyu Park, Seong-je Cho
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引用次数: 3

摘要

随着实时应用在嵌入式系统中的应用越来越广泛,低功耗嵌入式系统在保证实时约束的情况下最小化能耗变得越来越重要。动态电压缩放是一种通过降低电源电压来降低能耗的技术。然而,降低电源电压可能会干扰调度算法,使任务无法成功调度。本文将预调度的能耗最小化问题表述为一个优化问题,并证明了该问题是一个具有线性约束的非线性凸优化问题,可以用顺序二次规划方法求解。通过求解该问题,可以得到最优的供电电压,保证了所有任务的顺利调度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Consumption Optimization of Real-Time Embedded Systems
Minimizing energy consumption with guaranteeing real-time constraints in low-power embedded systems is gaining more importance as real-time applications become more widely used in embedded systems. Dynamic voltage scaling is a technique to reduce energy consumption by lowering supply voltage. However, lowering supply voltage may interfere with scheduling algorithms, so that tasks may not be successfully scheduled. In this paper, we formulate the problem of minimizing energy consumption for Pre-scheduling as an optimization problem, and show that the problem is a nonlinear convex optimization with linear constraints which can be solved by sequential quadratic programming. By solving the problem, we can obtain the optimal supply voltage and successful scheduling of all tasks is guaranteed.
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