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An adaptive scheduling and voltage/frequency selection algorithm for real-time energy harvesting systems

机译:实时能量收集系统的自适应调度和电压/频率选择算法

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In this paper we propose an adaptive scheduling and voltage frequency selection algorithm which targets at energy harvesting systems. The proposed algorithm adjusts the processor operating frequency under the timing and energy constraints based on workload information so that the system wide energy efficiency is achieved. In this approach, we decouple the timing and energy constraints and simplify the original scheduling problem by separating constraints in timing and energy domains. The proposed algorithm utilizes maximum task slack for energy saving. Experimental results show that the proposed method improves the system performance in remaining energy, deadline miss rate and the minimum storage capacity requirement for zero deadline miss rate. Comparing to the existing algorithms, the new algorithm decreases the deadline miss rate by at least 23%, and the minimum storage capacity by at least 20% under various processor utilizations.
机译:在本文中,我们提出了一种自适应调度和电压频率选择算法,其在能量收集系统中瞄准。该算法基于工作负载信息调整处理器工作频率,并根据工作量信息调整处理器工作频率,从而实现了系统宽能效。在这种方法中,我们通过分离定时和能量域中的约束来解耦时序和能量约束并简化原始调度问题。该算法采用最大任务松弛进行节能。实验结果表明,该方法提高了剩余能源,截止日期率和最小存储容量要求的系统性能,零期限错过率。与现有算法相比,新算法在各种处理器利用率下将截止日期未命中率降低至少23%,最小存储容量至少为20%。

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