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High-Order Recursive Filtering of Non-Uniformly Sampled Signals for Image and Video Processing

机译:用于图像和视频处理的非均匀采样信号的高阶递归滤波

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We present a discrete-time mathematical formulation for applying recursive digital filters to non-uniformly sampled signals. Our solution presents several desirable features: it preserves the stability of the original filters; is well-conditioned for low-pass, high-pass, and band-pass filters alike; its cost is linear in the number of samples and is not affected by the size of the filter support. Our method is general and works with any non-uniformly sampled signal and any recursive digital filter defined by a difference equation. Since our formulation directly uses the filter coefficients, it works out-of-the-box with existing methodologies for digital filter design. We demonstrate the effectiveness of our approach by filtering non-uniformly sampled signals in various image and video processing tasks including edge-preserving color filtering, noise reduction, stylization, and detail enhancement. Our formulation enables, for the first time, edge-aware evaluation of any recursive infinite impulse response digital filter (not only low-pass), producing high-quality filtering results in real time.
机译:我们提出了一种离散时间数学公式,用于将递归数字滤波器应用于非均匀采样信号。我们的解决方案具有几个理想的功能:保留了原始过滤器的稳定性;对于低通,高通和带通滤波器都条件良好;它的成本在样品数量上是线性的,不受过滤器支架尺寸的影响。我们的方法是通用的,适用于任何非均匀采样的信号以及由差分方程定义的任何递归数字滤波器。由于我们的公式直接使用滤波器系数,因此可以与数字滤波器设计的现有方法配合使用。我们通过在各种图像和视频处理任务中过滤非均匀采样的信号来证明我们方法的有效性,这些任务包括保留边缘的颜色过滤,降噪,样式化和细节增强。我们的公式首次实现了对任何递归无限冲激响应数字滤波器(不仅是低通)的边缘感知评估,从而实时产生高质量的滤波结果。

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