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Motion Blurring Direction Identification Based on Second-Order Difference Spectrum

机译:基于二阶差分谱的运动模糊方向识别

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An identification method for uniform linear motion blurring direction based on second-order difference spectrum was proposed. The power spectrum of the blurred image was calculated after the Laplace second-order difference, and then the power spectrum was processed by the homomorphic filtering and the circular low-pass filtering. The blurring direction was attained by linear fitting of the frequency points with highest amplitude selected from the spectrum image. The experiments were carried out by using the blurred images which were simulated by the Lenna standard images with the blur extent being 20 pixels, and the mean square error of detection were 1.32° without additional noise and 2.27° with Gauss noise that the variance was 0.01. When using the real blurred images, the accuracy of the detection was -0.54°. This proposed method is proved to be available for motion blur of random plane direction and adaptable for noise.
机译:提出了一种基于二阶差分谱的直线运动模糊方向识别方法。在拉普拉斯二阶差之后计算模糊图像的功率谱,然后通过同态滤波和圆形低通滤波对功率谱进行处理。通过线性拟合从频谱图像中选择的具有最高幅度的频率点来获得模糊方向。实验是通过使用模糊度为20像素的Lenna标准图像模拟的模糊图像进行的,检测的均方差为1.32°(无额外噪声)和2.27°(Gauss噪声),方差为0.01 。使用真实的模糊图像时,检测精度为-0.54°。实践证明,该方法可用于任意平面方向的运动模糊,并且适用于噪声。

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