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Image interpolation using enhanced multiresolution critical-point filters

机译:使用增强型多分辨率临界点滤波器进行图像插值

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摘要

There are increasing demands for image interpolation in various fields such as virtual reality, computer animation, and video transmission. The critical-point filters (CPF) we have proposed previously enable completely automatic matching of two images. In our previous method, however, it has taken a long time to compute the optimal parameter values by iterative searches. This paper proposes an improved algorithm called the enhanced critical-point filters (ECPF) where the parameters are stably computed using together the inverse mapping from the destination to the source. It takes only a second to match images whose size is 64 x 64. The algorithm is also improved in its precision by directly handling color images while the previous algorithm has taken only the intensity value into account. We apply ECPF to keyframe interpolation of video sequences. We also apply ECPF to interpolating two different views of an object to generate any intermediate views. In this case, there are many constraints that can be used to determine the mapping between the images. We propose a method to use such constraints to improve the accuracy of the mappings. As the results, image-based pseudo-3D models are easily created from a set of views without any special devices.
机译:在诸如虚拟现实,计算机动画和视频传输的各个领域中对图像插值的需求不断增长。我们之前提出的临界点滤波器(CPF)可以实现两个图像的全自动匹配。但是,在我们以前的方法中,通过迭代搜索来计算最佳参数值花费了很长时间。本文提出了一种改进的算法,称为增强型临界点滤波器(ECPF),该算法使用从目标到源的逆映射一起稳定地计算参数。匹配大小为64 x 64的图像仅需一秒钟。通过直接处理彩色图像,该算法的精度也得到了提高,而先前的算法仅考虑了强度值。我们将ECPF应用于视频序列的关键帧插值。我们还将ECPF应用于插值对象的两个不同视图以生成任何中间视图。在这种情况下,可以使用许多约束来确定图像之间的映射。我们提出了一种使用这种约束来提高映射精度的方法。结果,无需任何特殊设备即可轻松地从一组视图创建基于图像的伪3D模型。

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