
If an object is photographed at motion in front of a static background, the object will be blurred while the background sharp and partially occluded by the object. The goal is to recover the object appearance from such blurred image. We adopt the image formation model for fast moving objects and consider objects undergoing 2D translation and rotation. For this scenario we formulate the estimation of the object shape, appearance, and motion from a single image and known background as a constrained optimization problem with appropriate regularization terms. Both similarities and differences with blind deconvolution are discussed with the latter caused mainly by the coupling of the object appearance and shape in the acquisition model. Necessary conditions for solution uniqueness are derived and a numerical solution based on the alternating direction method of multipliers is presented. The proposed method is evaluated on a new dataset.
Blind deconvolution, alternating direction method of multipliers, Trajectory, Shape, Two dimensional displays, Cameras, Convolution, motion estimation, Image restoration, motion deblurring, shape estimation, Estimation, object deblurring, image matting
Blind deconvolution, alternating direction method of multipliers, Trajectory, Shape, Two dimensional displays, Cameras, Convolution, motion estimation, Image restoration, motion deblurring, shape estimation, Estimation, object deblurring, image matting
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