硬实时系统中能源效率和容错调度

Yu Liu, Han Liang, Kaijie Wu
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引用次数: 23

摘要

本文研究了基于帧的实时系统中容错与节能的两难问题。在支持L电压等级的系统上,给定K个任务,提出的基于启发式的调度技术在无故障时最小化任务执行的能量消耗,并在发生故障的最坏情况下保持可行性。该技术首先在支持连续电压缩放的可比系统中找到最优解,然后将解转换为原始系统。运行时复杂度仅为(LK2)。实验结果表明,该方法在多项式时间内取得了接近最优的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scheduling for energy efficiency and fault tolerance in hard real-time systems
This paper studies the dilemma between fault tolerance and energy efficiency in frame-based real-time systems. Given a set of K tasks to be executed on a system that supports L voltage levels, the proposed heuristic-based scheduling technique minimizes the energy consumption of tasks execution when faults are absent, and preserves feasibility under the worst case of fault occurrences. The proposed technique first finds out the optimal solution in a comparable system that supports continuous voltage scaling, then converts the solution to the original system. The runtime complexity is only (LK2). Experimental results show that the proposed approach produces near-optimal results in polynomial time.
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