Image Enlargement Research based on New Power Series - Newton Interpolation Algorithm

Lihua Hao, Naifan Zhang, Zhumao Lu, Yangjun Zhang
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Abstract

Image interpolation is one of the important techniques in image enlargement. Traditional linear interpolation and bi-cubic interpolation methods are unable to guarantee the derivative continuity at the end point of the interpolated interval. In the case of large-scale enlargement, there will be a Block or fuzzy phenomenon. In this paper, a new power series - Newton interpolation algorithm is proposed to achieve high resolution enlargement. The interpolation principle based on the new algorithm is also analyzed: At first, the programme construct the new power-series function, then this function is used to get the derivative, finally the derivative is utilized to construct the Newton-interpolation function. The test result shows that this algorithm can well reflect the gray-level change even in large-scale enlargement, can make up for the defects of the traditional algorithms.
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基于新幂级数牛顿插值算法的图像放大研究
图像插值是图像放大的重要技术之一。传统的线性插值和双三次插值方法不能保证插值区间端点处导数的连续性。在大规模放大的情况下,会出现块化或模糊现象。本文提出了一种新的幂级数牛顿插值算法,以实现图像的高分辨率放大。分析了基于新算法的插值原理:首先用程序构造新的幂级数函数,然后用该函数求导数,最后利用导数构造牛顿插值函数。测试结果表明,该算法即使在大规模放大情况下也能很好地反映灰度变化,弥补了传统算法的不足。
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