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Energy Efficient Real-Time Task Scheduling for Embedded Systems with Hybrid Main Memory

机译:具有混合主存储器的嵌入式系统的高效节能实时任务调度

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Available energy becomes a critical design issue for the increasingly complex real-time embedded systems. Phase Change Memory (PCM), with high density and low idle power, has recently been extensively studied as a promising alternative of DRAM. Hybrid PCM-DRAM main memory architecture has been proposed to leverage the low power of PCM and high speed of DRAM. In this paper, we propose energy-aware real-time task scheduling strategies for hybrid PCM-DRAM based embedded systems. Given the execution time variation when a task is loaded into PCM or DRAM, we re-design the static table-driven scheduling for a set of fixed tasks, as well as the Rate-Monotonic (RM) and Earliest Deadline First (EDF) scheduling policies for periodic task sets. Furthermore, since the actual execution time can be much shorter than the worst-case execution time in the actual execution, we propose online schedulers which migrates the tasks between PCM and DRAM to optimize the energy consumption by utilizing the slack time resulted from the completed tasks. All the proposed algorithms minimize the number of task migrations from PCM to DRAM by ensuring that aperiodic tasks are not migrated while each periodic task instance can be migrated at most once. Experimental results show our proposed scheduling algorithms satisfy the real-time constraints and significantly reduce the energy consumption.
机译:对于越来越复杂的实时嵌入式系统,可用能量成为关键的设计问题。具有高密度和低空闲功率的相变存储器(PCM)最近已被广泛研究作为有前途的DRAM替代产品。已经提出了混合PCM-DRAM主存储器架构以利用PCM的低功率和DRAM的高速。在本文中,我们为基于混合PCM-DRAM的嵌入式系统提出了能量敏感的实时任务调度策略。考虑到将任务加载到PCM或DRAM中时执行时间的变化,我们针对一组固定任务重新设计了静态表驱动的调度,以及速率单音(RM)和最早截止日期优先(EDF)调度定期任务集的策略。此外,由于实际执行时间可能比实际执行中的最坏情况执行时间要短得多,因此我们建议使用在线调度程序,该任务在PCM和DRAM之间迁移任务,以利用完成的任务导致的空闲时间来优化能耗。所有提出的算法都通过确保不迁移非周期性任务,而每个周期性任务实例最多可以迁移一次,从而最大限度地减少了从PCM到DRAM的任务迁移次数。实验结果表明,本文提出的调度算法满足了实时约束条件,并显着降低了能耗。

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