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Low energy process variation tolerant digital image processing system design based on accuracy-energy tradeoffs

机译:基于精度 - 能源权衡的低能量过程变化耐受数字图像处理系统设计

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In this paper, we present a low energy image processing system design based on efficient accuracy-energy tradeoffs. The proposed design allows aggressive voltage scaling in the presence of process variation by employing an error concealing method based on the inherent error tolerance of digital signal processing applications. Based on a system-level analysis, we demonstrate that significant energy savings can be achieved from voltage scaling and switching activity reduction for computational components. Using the proposed method, we can also achieve energy savings for other subsystems such as memory by increasing compression ratio. The experimental results show that average overall energy savings of up to ∼50% are possible over a conventional design in a 45nm technology.
机译:在本文中,我们基于高效的精度 - 能量权衡介绍了低能量图像处理系统设计。所提出的设计通过采用基于数字信号处理应用的固有误差容限而采用误差隐藏方法,可以在处理变化存在下进行积极电压缩放。基于系统级分析,我们证明可以从电压缩放和计算组件的切换活动降低来实现显着的节能。使用所提出的方法,我们还可以通过增加压缩比来实现其他子系统的节能,例如存储器。实验结果表明,在45nm技术中,在传统设计中,平均整体节能高达〜50%。

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