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Design and analysis of an approximate 2D convolver

机译:近似二维卷积器的设计与分析

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摘要

This paper proposes a two-dimensional (2D) convolver in which both approximate circuit- and algorithm-level techniques are utilized in the design. Truncation is used as circuit techniques, while bit-width reduction is utilized at the algorithm level. These different techniques are related to the configuration of the convolver by which its operation can be configured to meet different and often contrasting figures of merit. Circuit-level simulation (using HSPICE) and an extensive evaluation of different error metrics, generic metrics such as the mean error distance (MED) and the peak signal noise ratio (PSNR) for image convolution are performed. A detailed error analysis is also presented to substantiate the simulation results. Convolution for image processing (Gaussian smoothing) is treated in detail to show the effectiveness of the proposed approach. The design, the analysis and the simulation results show that the approximate techniques utilized in the inexact convolver can operate in synergy.
机译:本文提出了一种二维(2D)舒展器,其中在设计中使用了近似电路和算法级技术。截断用作电路技术,而在算法级别使用比特宽度降低。这些不同的技术与扫描程序的配置有关,其操作可以被配置为满足不同且通常对比的优点图。电路级仿真(使用HSPICE)和对不同误差度量的广泛评估,执行诸如平均误差距离(MED)和用于图像卷积的峰值信号噪声比(PSNR)的通用度量。还提出了详细的错误分析以证实仿真结果。图像处理(高斯平滑)的卷积详细处理,以显示所提出的方法的有效性。设计,分析和仿真结果表明,不准确的康沃尔悬雍垂中使用的近似技术可以在协同作用中运行。

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