An efficient hardware accelerated design for image denoising using Extended Trilateral filter

M. Dey, Chandrajit Pal, A. Chakrabarti, R. Ghosh
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引用次数: 3

Abstract

Trilateral filtering presents an edge preserving smoothing filter. The predecessor of Trilateral filtering, the bilateral filter is a non-linear filtering technique that can reduce noise from an image while preserving the strong and sharp edges, but it cannot provide desired result when the edges have valley or ridge like features. The Trilateral filter is extended to be a gradient-preserving filter, including the local image gradient (signal plane) into the filtering process. This filter has the added benefit that it requires only one user-set parameter (neighborhood size used for bilateral gradient smoothing), and the rest are self-tuning to the image. In this paper, we introduce an extended version of Trilateral filtering where domain and range filtering are applied on the image separately followed by applying the original Trilateral filter on the image that is produced by combination of domain and range filtered outputs. This extended approach gives better noise reduction than the original Trilateral approach and improves the image quality. We also provide an efficient Field Programmable Gate Array (FPGA) based implementation of the proposed Extended Trilateral filter(ETF) on a hardware software co-simulation environment to validate the design.
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基于扩展三边滤波器的图像去噪硬件加速设计
三边滤波是一种保持边缘的平滑滤波器。作为三边滤波的前身,双边滤波是一种非线性滤波技术,它可以在保留图像的强而锐利的边缘的同时减少图像中的噪声,但当边缘具有谷状或脊状特征时,它无法提供理想的结果。将三边滤波器扩展为保梯度滤波器,将局部图像梯度(信号平面)纳入滤波过程。这个过滤器还有一个额外的好处,它只需要一个用户设置的参数(用于双边梯度平滑的邻域大小),其余的都是自调整到图像。在本文中,我们介绍了一种扩展版本的三边滤波,其中分别对图像进行域和范围滤波,然后对由域和范围滤波输出组合产生的图像应用原始三边滤波器。这种扩展的方法比原来的三边方法具有更好的降噪效果,并提高了图像质量。我们还提供了一个高效的基于现场可编程门阵列(FPGA)的扩展三边滤波器(ETF)的硬件软件联合仿真环境来验证设计。
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