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A Novel Framework for Shock Filter Using Partial Differential Equations

机译:一种基于偏微分方程的冲击滤波新框架

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In dilation or erosion processes, a shock filter is widely used in signal enhancing or image deburring. Traditionally, sign function is employed in shock filtering for reweighting of edge-detection in images and decides whether a pixel should dilate to the local maximum or evolve to the local minimum. Some researchers replace sign function with tanh function or arctan function, trying to change the evolution tracks of the pixels when filtering is in progress. However, analysis here reveals that only function replacement does usually not work. This paper revisits first shock filters and their modifications. Then, a fuzzy shock filter is proposed after a membership function in a shock filter model is adopted to adjust the evolve rate of image pixels. The proposed filter is a parameter tuning system, which unites several formulations of shock filters into one fuzzy framework. Experimental results show that the new filter is flexible and robust and can converge fast.
机译:在膨胀或侵蚀过程中,冲击滤波器广泛用于信号增强或图像去毛刺。传统上,符号函数用于冲击滤波,用于对图像中的边缘检测进行重新加权,并决定像素是应该膨胀到局部最大值还是演变到局部最小值。一些研究人员用tanh函数或arctan函数代替符号函数,试图在过滤过程中改变像素的演化轨迹。然而,这里的分析表明,只有功能替换通常不起作用。本文重新审视了第一冲击滤波器及其改进。然后,在采用冲击滤波模型中的隶属函数调整图像像素演化速率后,提出模糊冲击滤波器;所提出的滤波器是一种参数调谐系统,它将冲击滤波器的多种配方组合成一个模糊框架。实验结果表明,该滤波器具有柔性和鲁棒性,收敛速度快。

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