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An Integration of Imprecise Computation Model and Real-Time Voltage and Frequency Scaling

机译:不精确计算模型与实时电压和频率缩放的集成

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As microprocessor performance grows, high throughput and the power management are becoming more important on embedded real-time systems. Real-Time Voltage and Frequency Scaling (RT-VFS) has been proposed to reduce the power consumption and ensure real-time constraints. An imprecise computation model adds an optional part to Liu and Layland's model to improve the quality of computations. This paper proposes the scheme to integrate an imprecise computation model and RT-VFS that can reduce the power consumption and improve the quality of computations within real-time constraints. Moreover, we implement this scheme on Dependable Responsive Multithreaded Processor (D-RMTP). D-RMTP is a prioritized simultaneous multithreaded processor for embedded real-time systems and D-RMTP system in a package supports RT-VFS. We implement the proposed scheme by use of D-RMTP original features to improve the quality of computations and reduce the energy consumption. Through experimental evaluation, we show that the proposed scheme satisfies both the lower energy consumption and higher performance on real environments. In our evaluation, the proposed scheme achieves a maximum of 135% improvement of the quality of computations per energy consumption.
机译:随着微处理器性能的提高,高吞吐量和电源管理在嵌入式实时系统上变得越来越重要。提出了实时电压和频率缩放(RT-VFS),以减少功耗并确保实时约束。不精确的计算模型为Liu和Layland模型添加了可选部分,以提高计算质量。本文提出了一种将不精确的计算模型与RT-VFS集成在一起的方案,该方案可以在实时约束下降低功耗并提高计算质量。此外,我们在可靠响应多线程处理器(D-RMTP)上实现了该方案。 D-RMTP是用于嵌入式实时系统的有优先级的同时多线程处理器,并且包装中的D-RMTP系统支持RT-VFS。我们利用D-RMTP的原始特征来实施所提出的方案,以提高计算质量并减少能耗。通过实验评估,我们表明所提出的方案在实际环境中既满足了较低的能耗,又满足了较高的性能。在我们的评估中,提出的方案使每能耗的计算质量最多提高了135%。

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