Alexiadis Dimitrios S, Sergiadis George D
Telecommunications Laboratory, Department of Electrical and Computer Engineering, Aristotle University of Thessaloniki, Thessaloniki, Greece.
IEEE Trans Image Process. 2009 Jan;18(1):168-87. doi: 10.1109/TIP.2008.2007603.
Although the motion estimation problem has been extensively studied, most of the proposed estimation approaches deal mainly with monochrome videos. The most usual way to apply them also in color image sequences is to process each color channel separately. A different, more sophisticated approach is to process the color channels in a "holistic" manner using quaternions, as proposed by Ell and Sangwine. In this paper, we extend standard spatiotemporal Fourier-based approaches to handle color image sequences, using the hypercomplex Fourier transform. We show that translational motions are manifested as energy concentration along planes in the hypercomplex 3-D Fourier domain and we describe a methodology to estimate the motions, based on this property. Furthermore, we compare the three-channels-separately approach with our approach and we show that the computational effort can be reduced by a factor of 1/3, using the hypercomplex Fourier transform. Also, we propose a simple, accompanying method to extract the moving objects in the hypercomplex Fourier domain. Our experimental results on synthetic and natural images verify our arguments throughout the paper.
尽管运动估计问题已经得到了广泛研究,但大多数提出的估计方法主要处理单色视频。将它们应用于彩色图像序列的最常见方法是分别处理每个颜色通道。一种不同的、更复杂的方法是如埃尔(Ell)和桑格wine(Sangwine)所提出的,使用四元数以“整体”方式处理颜色通道。在本文中,我们使用超复数傅里叶变换扩展基于标准时空傅里叶的方法来处理彩色图像序列。我们表明平移运动表现为超复数三维傅里叶域中沿平面的能量集中,并且我们基于此属性描述了一种估计运动的方法。此外,我们将分别处理三个通道的方法与我们的方法进行比较,结果表明使用超复数傅里叶变换可以将计算量减少三分之一。而且,我们提出了一种简单的伴随方法来在超复数傅里叶域中提取运动对象。我们在合成图像和自然图像上的实验结果验证了本文中的论点。