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Design Methodology for Low Power and Parametric Robustness Through Output-Quality Modulation: Application to Color-Interpolation Filtering

机译:通过输出质量调制实现低功耗和参数鲁棒性的设计方法:在色彩插值滤波中的应用

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摘要

Power dissipation and robustness to process variation have conflicting design requirements. Scaling of voltage is associated with larger variations, while Vdd upscaling or transistor up-sizing for parametric-delay variation tolerance can be detrimental for power dissipation. However, for a class of signal-processing systems, effective tradeoff can be achieved between Vdd scaling, variation tolerance, and ldquooutput quality.rdquo In this paper, we develop a novel low-power variation-tolerant algorithm/architecture for color interpolation that allows a graceful degradation in the peak-signal-to-noise ratio (PSNR) under aggressive voltage scaling as well as extreme process variations. This feature is achieved by exploiting the fact that all computations used in interpolating the pixel values do not equally contribute to PSNR improvement. In the presence of Vdd scaling and process variations, the architecture ensures that only the ldquoless important computationsrdquo are affected by delay failures. We also propose a different sliding-window size than the conventional one to improve interpolation performance by a factor of two with negligible overhead. Simulation results show that, even at a scaled voltage of 77% of nominal value, our design provides reasonable image PSNR with 40% power savings.
机译:功耗和对工艺变化的鲁棒性具有冲突的设计要求。电压的缩放与较大的变化相关,而针对参数延迟变化容差的Vdd放大或晶体管放大可能会对功耗造成不利影响。但是,对于一类信号处理系统,可以在Vdd缩放,变化容差和“输出质量”之间实现有效的折衷。本文为彩色插值开发了一种新颖的低功耗容差算法/架构,该算法/架构可以实现在激进的电压缩放以及极端的工艺变化下,峰值信噪比(PSNR)会适度下降。通过利用以下事实来实现此功能:在插值像素值时使用的所有计算均不能同等地促进PSNR的提高。在存在Vdd缩放和过程变化的情况下,该体系结构可确保只有“不太重要的计算”受到延迟故障的影响。我们还提出了一种与常规滑动窗口大小不同的滑动窗口大小,以将插值性能提高了两倍,而开销却可以忽略不计。仿真结果表明,即使在标称电压为标称值的77%的情况下,我们的设计也可提供合理的图像PSNR,并节省40%的功耗。

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