像素
相位相关
计算机视觉
傅里叶变换
人工智能
运动补偿
计算机科学
翻译(生物学)
参考坐标系
光学
分光计
帧(网络)
物理
傅里叶分析
分数阶傅立叶变换
电信
化学
生物化学
量子力学
信使核糖核酸
基因
作者
Ahmed Mahgoub,Thanh Huy Nguyen,Raphaël Desbiens,A. Zaccarin
标识
DOI:10.1109/icip.2009.5413881
摘要
This paper presents an algorithm to align the frames obtained with a non-stationary imaging Fourier transform spectrometer (IFTS). These frames contain both relative motion and intensity variation due to the interference pattern of the IFTS called interferogram. Two motion estimation techniques are combined to register the frames with a sub-pixel precision. An approach based on mutual information is first used for pixel-precision registration with respect to a single reference frame. Sub-pixel precision is then achieved using a phase-based technique. Simulation results show that our registration approach can successfully reconstruct the interferograms of the observed scene. Spectra obtained from these interferograms are undistorted and have better spectral resolution than spectra obtained with a registration algorithm using only phase-based motion estimation, or without motion compensation. We also show that scene elements with different electromagnetic spectrum can be more easily identified in a spectral cube computed from registered interferogram frames.
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