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Geometric registration of images with arbitrarily-shaped local intensity variations from shadows

机译:图像具有任意形状的局部强度随阴影变化的几何配准

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In this paper, we focus on the sub-pixel geometric registration of images with arbitrarily-shaped local intensity variations, particularly due to shadows. Intensity variations tend to degrade the performance of geometric registration, thereby degrading subsequent processing. To handle intensity variations, we propose a model with illumination correction that can handle arbitrarily-shaped regions of local intensity variations. The approach is set in an iterative coarse-to-fine framework with steps to estimate the geometric registration with illumination correction and steps to refine the arbitrarily-shaped local intensity regions. The results show that this model outperforms linear scalar model by a factor of 6.8 in sub-pixel registration accuracy.
机译:在本文中,我们专注于具有任意形状的局部强度变化的图像的子像素几何登记,特别是由于阴影。强度变化倾向于降低几何配准的性能,从而降低后续处理。为了处理强度变化,我们提出了一种具有照明校正的模型,可以处理局部强度变化的任意形状的区域。该方法被设置在迭代粗到细框架中,其步骤以估计与照明校正的几何配准和改进任意形状的局部强度区域的步骤。结果表明,该模型以子像素配准精度为6.8的线性标量模型。

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