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3-D Discrete Analytical Ridgelet Transform

机译:3-D离散分析脊波变换

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In this paper, we propose an implementation of the 3-D Ridgelet transform: the 3-D discrete analytical Ridgelet transform (3-D DART). This transform uses the Fourier strategy for the computation of the associated 3-D discrete Radon transform. The innovative step is the definition of a discrete 3-D transform with the discrete analytical geometry theory by the construction of 3-D discrete analytical lines in the Fourier domain. We propose two types of 3-D discrete lines: 3-D discrete radial lines going through the origin defined from their orthogonal projections and 3-D planes covered with 2-D discrete line segments. These discrete analytical lines have a parameter called arithmetical thickness, allowing us to define a 3-D DART adapted to a specific application. Indeed, the 3-D DART representation is not orthogonal, It is associated with a flexible redundancy factor. The 3-D DART has a very simple forward/inverse algorithm that provides an exact reconstruction without any iterative method. In order to illustrate the potentiality of this new discrete transform, we apply the 3-D DART and its extension to the Local-DART (with smooth windowing) to the denoising of 3-D image and color video. These experimental results show that the simple thresholding of the 3-D DART coefficients is efficient
机译:在本文中,我们提出了3-D Ridgelet变换的一种实现方式:3-D离散分析Ridgelet变换(3-D DART)。该变换使用傅里叶策略来计算相关的3-D离散Radon变换。创新步骤是通过在傅立叶域中构造3-D离散分析线,用离散分析几何学理论定义离散3-D变换。我们提出了两种类型的3-D离散线:通过其正交投影定义的原点的3-D离散径向线和覆盖有2-D离散线段的3-D平面。这些离散的分析线具有一个称为算术厚度的参数,使我们能够定义适合特定应用的3-D DART。实际上,3-D DART表示不是正交的,它与灵活的冗余因子相关联。 3-D DART具有非常简单的正向/反向算法,无需任何迭代方法即可提供精确的重建。为了说明这种新的离散变换的潜力,我们将3-D DART及其扩展应用于Local-DART(使用平滑窗口)对3-D图像和彩色视频进行去噪。这些实验结果表明,对3-D DART系数进行简单的阈值处理是有效的

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