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Spatiotemporal approach for time-varying global image motion estimation

机译:时空全局图像运动估计的时空方法

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摘要

Image motion estimation using the spatiotemporal approach has largely relied on the constant velocity assumption, and thus becomes inappropriate when the velocity of the imaged scene or the camera changes during the data acquisition time. Using a polynomial or a trigonometric polynomial model for the time variation of the image motion, spatiotemporal algorithms are developed in this paper to handle time-varying (but space-invariant) motion. Under these models, it is shown that time-varying image motion estimation is equivalent to parameter estimation of one-dimensional (1-D) polynomial phase or phase-modulated signals, which allows one to exploit well-established results in radar signal processing. When compared with alternative approaches, the resulting motion estimation algorithms produce more accurate estimates. Simulation results are provided to demonstrate the proposed schemes.
机译:使用时空方法的图像运动估计在很大程度上依赖于恒定速度假设,因此,当成像场景或摄像机的速度在数据获取时间内发生变化时,就变得不合适。使用多项式或三角多项式模型来处理图像运动的时间变化,本文开发了时空算法来处理时变(但空间不变)运动。在这些模型下,表明时变图像运动估计等效于一维(1-D)多项式相位或相位调制信号的参数估计,这使人们可以利用雷达信号处理中公认的结果。当与替代方法进行比较时,所得的运动估计算法将产生更准确的估计。仿真结果表明了所提出的方案。

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