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Dynamic WCET Estimation for Real-Time Multicore Embedded Systems Supporting DVFS

机译:支持DVFS的实时多核嵌入式系统的动态WCET估计

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摘要

A key issue to reduce the number of deadline misses and improve energy savings in embedded real-time systems is to accurately estimate the execution time of tasks as a function of the processor frequency. Existing execution time models however, use to rely on off-line analysis or on the assumption that the memory access time (quantified in processor cycles) is constant, ignoring that memory system components are not affected by the processor clock. In this paper, we propose the Processor-Memory (Proc-Mem) model, which dynamically predicts the execution time of the applications running in a multicore processor when varying the processor frequency. Proc-Mem approach is compared with a typical Constant Memory Access Time model, namely CMAT. Results show that the deviation of Proc-Mem is always lower than 6% with respect to the measured execution time, while the deviation of the CMAT model always exceeds 30%. These results turn in important energy savings for a similar number of deadline misses. Energy savings are on average by 22.9%, and up to 47.8% in the studied mixes.
机译:在嵌入式实时系统中,减少截止期限的次数并提高节能效果的关键问题是根据处理器频率准确估算任务的执行时间。但是,现有的执行时间模型常依赖于脱机分析或假设内存访问时间(以处理器周期进行量化)是恒定的,而忽略了内存系统组件不受处理器时钟的影响。在本文中,我们提出了处理器-内存(Proc-Mem)模型,该模型可以动态预测在更改处理器频率时在多核处理器中运行的应用程序的执行时间。将Proc-Mem方法与典型的恒定内存访问时间模型(即CMAT)进行了比较。结果表明,相对于所测量的执行时间,Proc-Mem的偏差始终低于6%,而CMAT模型的偏差始终超过30%。这些结果可节省大量的能源,而导致错过了类似的截止日期。节能平均达到22.9%,在所研究的混合料中高达47.8%。

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