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Reliability-Aware Energy-Efficient Scheduling for (m, k)-Constrained Real-Time Systems Through Shared Time Slots

机译:通过共享时隙的可靠性 - 感知节能调度(m,k)的实时系统

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While energy consumption is the primary concern for the design of real-time systems, reliability and Quality of Service (QoS) are becoming increasingly important in the development of today's pervasive computing systems. In this paper, we present a reliability-aware energy management (RAEM) scheme for minimizing the energy consumption for (m, k )-constrained real-time systems, which requires that at least m out of any k consecutive jobs of a real-time task meet their deadlines. In order to meet the (m, k ) constraints while preserving the system reliability, we propose to reserve shared recovery space for realtime tasks based on window-constraints that could be transferred to the corresponding (m, k )-constraints. Moreover, we propose efficient online scheduling techniques to boost the energy saving through shared slack reclamation. Through extensive simulations, our experimental results demonstrate that the proposed techniques significantly outperformed the previous research in reducing energy consumption for real-time systems while satisfying the (m, k )-constraints under the reliability requirement. (c) 2020 Elsevier B.V. All rights reserved.
机译:虽然能源消耗是对实时系统设计的主要关注点,但服务的可靠性和质量(QoS)在当今普遍的计算系统的发展中变得越来越重要。在本文中,我们提出了一种可靠性感知的能量管理(RAEM)方案,用于最小化(M,K)的实时系统的能量消耗,这要求至少在真实的k连续工作中的任何k个k时间任务符合他们的截止日期。为了满足(m,k)约束,同时保留系统可靠性,我们建议基于可以将可以传送到对应(m,k)的窗口约束的窗口约束来保留用于实时任务的共享恢复空间。此外,我们提出了有效的在线调度技术,以通过共享的松弛填充来提高节能。通过广泛的模拟,我们的实验结果表明,所提出的技术显着优于前面的研究减少了实时系统的能耗,同时满足于可靠性要求下的(m,k)控制。 (c)2020 Elsevier B.v.保留所有权利。

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