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3D Filtering Technique in presence of Additive Noise in Color Videos Implemented on DSP

机译:在DSP上实现的彩色视频中存在加性噪声的3D滤波技术

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A filtering method for color videos contaminated by additive noise is presented. The proposed framework employs three filtering stages: spatial similarity filtering, neighboring frame denoising, and spatial post-processing smoothing. The difference with other state-of- the-art filtering methods, is that this approach, based on fuzzy logic, analyses basic and related gradient values between neighboring pixels into a 7 × 7 sliding window in the vicinity of a central pixel in each of the RGB channels. Following, the similarity measures between the analogous pixels in the color bands are taken into account during the denoising. Next, two neighboring video frames are analyzed together estimating local motions between the frames using block matching procedure. In the final stage, the edges and smoothed areas are processed differently in a current frame during the post-processing filtering. Numerous simulations results confirm that this 3D fuzzy filter perform better than other state-of-the-art methods, such as: 3D-LLMMSE, WMVCE, RFMDAF, FDARTF_G, VBM3D and NLM, in terms of objective criteria (PSNR, MAE, NCD and SSIM) as well as subjective perception via human vision system in the different color videos. An efficiency analysis of the designed and other mentioned filters have been performed on the DSPs TMS320 DM642 and TMS320DM648 by Texas Instruments through MATLAB and Simulink module showing that the novel 3D fuzzy filter can be used in real-time processing applications.
机译:提出了一种由加性噪声污染的彩色视频的滤波方法。所提出的框架采用三个滤波阶段:空间相似性滤波,相邻帧降噪和空间后处理平滑。与其他最新滤波方法的不同之处在于,该方法基于模糊逻辑,将相邻像素之间的基本和相关梯度值分析为每个像素中一个中心像素附近的7×7滑动窗口RGB通道。随后,在去噪期间考虑色带中的相似像素之间的相似性度量。接下来,使用块匹配过程一起分析两个相邻的视频帧,以估计帧之间的局部运动。在最后阶段,在后处理滤波过程中,在当前帧中对边缘和平滑区域进行不同的处理。大量仿真结果证明,就客观标准(PSNR,MAE,NCD)而言,该3D模糊滤波器的性能优于其他最新技术,例如3D-LLMMSE,WMVCE,RFMDAF,FDARTF_G,VBM3D和NLM和SSIM)以及通过人类视觉系统在不同彩色视频中的主观感知。德州仪器(TI)通过MATLAB和Simulink模块对DSP TMS320 DM642和TMS320DM648进行了设计滤波器和其他提到的滤波器的效率分析,结果表明该新型3D模糊滤波器可用于实时处理应用。

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