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A Fast Directional Sigma Filter for Noise Reduction in Digital TV Signals

机译:用于减少数字电视信号噪声的快速定向Sigma滤波器

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摘要

This paper proposes a structure-oriented multidirectional Sigma filter for additive white Gaussian noise in digital TV signals. Filtering is restricted to homogeneous directions to reduce blurring by analyzing local structure using directional second derivatives. The proposed filter improves the Sigma estimate of denoised pixels by imposing a homogeneity constraint on the noise-adaptive selection of estimation pixels by the Sigma filter. It achieves noise-reduction gains of up to 4.8 dB Peak-Signal-to-Noise Ratio (PSNR) in real-time. The block size, shape and coefficients of the filter are adapted to both structure and noise level. The goal is to optimize the filter with regard to noise-reduction gain and structure preservation. A possible hardware-oriented design of the proposed filter is also presented. To show the effectiveness of the proposed method, comparisons between the proposed Sigma filter and referenced Sigma filters in terms of the PSNR gain and the modulation transfer function (MTF) are shown. Results show that the proposed method achieves a higher PSNR gain and contrast transfer ratio than referenced Sigma filters.
机译:本文针对数字电视信号中的加性高斯白噪声提出了一种面向结构的多向Sigma滤波器。通过使用定向二阶导数分析局部结构,将滤波限制在同构方向,以减少模糊。所提出的滤波器通过对西格玛滤波器对估计像素的噪声自适应选择施加均匀性约束来改善去噪像素的西格玛估计。它可实时实现高达4.8 dB的峰信噪比(PSNR)的降噪增益。滤波器的块大小,形状和系数都适合于结构和噪声水平。目的是针对降低噪声的增益和结构保留来优化滤波器。还提出了一种可能的面向硬件的设计建议的滤波器。为了显示所提出方法的有效性,显示了所提出的Sigma滤波器和参考Sigma滤波器之间在PSNR增益和调制传递函数(MTF)方面的比较。结果表明,与参考Sigma滤波器相比,该方法可实现更高的PSNR增益和对比度转移率。

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