基于高效逼近技术的二维高斯平滑滤波器设计

Ankur Jaiswal, Bharat Garg, Vikas Kaushal, G. K. Sharma
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引用次数: 21

摘要

便携式多媒体设备有限的电池寿命和快速增长的功能要求节能设计。这些器件中主要采用基于高斯平滑的滤波器,速度慢且严重影响性能。在本文中,我们提出了一种新的节能的近似二维高斯平滑滤波器(2D- gsf)架构,该架构利用了“最接近像素近似”和四舍五入高斯核系数。该架构显著提高了设计节能滤波器时的速度-功率-面积-精度(SPAA)指标。在边缘检测等实际应用中验证了该算法的有效性。仿真结果表明,与众所周知的近似2D-GSF相比,该方法的面积、功耗和延迟分别降低了72%、79%和76%,PSNR损失为0.4dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPAA-Aware 2D Gaussian Smoothing Filter Design Using Efficient Approximation Techniques
The limited battery lifetime and rapidly increasing functionality of portable multimedia devices demand energy-efficient designs. The filters employed mainly in these devices are based on Gaussian smoothing, which is slow and, severely affects the performance. In this paper, we propose a novel energy-efficient approximate 2D Gaussian smoothing filter (2D-GSF) architecture by exploiting "nearest pixel approximation" and rounding-off Gaussian kernel coefficients. The proposed architecture significantly improves Speed-Power-Area-Accuracy (SPAA) metrics in designing energy-efficient filters. The efficacy of the proposed approximate 2D-GSF is demonstrated on real application such as edge detection. The simulation results show 72%, 79% and 76% reduction in area, power and delay, respectively with acceptable 0.4dB loss in PSNR as compared to the well-known approximate 2D-GSF.
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