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Frequency-domain motion estimation using a complex lapped transform

机译:使用复杂重叠变换的频域运动估计

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摘要

A frequency-domain algorithm for motion estimation based on overlapped transforms of the image data is developed as an alternative to block matching methods. The complex lapped transform (CLT) is first defined by extending the lapped orthogonal transform (LOT) to have complex basis functions. The CLT basis functions decay smoothly to zero at their end points, and overlap by 2:1 when a data sequence is transformed. A method for estimating cross-correlation functions in the CLT domain is developed. This forms the basis of a motion estimation algorithm that calculates vectors for overlapping, windowed regions of data. The overlapping data window used has no block edge discontinuities and results in smoother motion fields. Furthermore, when motion compensation is performed using similar overlapping regions, the algorithm gives comparable or smaller prediction errors than standard models using exhaustive search block matching, and computational load is lower for larger displacement ranges and block sizes.
机译:作为块匹配方法的替代方案,开发了一种基于图像数据重叠变换的运动估计频域算法。首先通过扩展重叠​​正交变换(LOT)以具有复杂基函数来定义复杂重叠变换(CLT)。 CLT基函数在其端点平滑衰减到零,并在转换数据序列时重叠2:1。开发了一种在CLT域中估计互相关函数的方法。这构成了运动估计算法的基础,该算法为重叠的窗口数据区域计算矢量。所使用的重叠数据窗口没有块边缘不连续性,因此运动场更平滑。此外,当使用相似的重叠区域执行运动补偿时,与使用穷举搜索块匹配的标准模型相比,该算法可提供与标准模型相当或较小的预测误差,并且对于较大的位移范围和块大小,计算负荷较低。

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