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Depth-aware blur kernel estimation method for iris deblurring

机译:虹膜去模糊的深度感知模糊核估计方法

摘要

A method of estimating a blur kernel distribution for visual iris recognition includes determining a first mathematical relationship between an in-focus position of a camera lens and a distance between the lens and an iris whose image is to be captured by the lens. The first relationship is used to estimate a second mathematical relationship between the in-focus position of the lens and a standard deviation defining a Gaussian blur kernel distribution. A position of an eye of a living being at a future point in time is predicted. A focus position of the camera lens is adjusted based upon the predicted position of the eye. The camera lens with the adjusted focus position is used to produce an image of the living being's eye at the point in time. An actual position of the living being's eye at the point in time is sensed. The first relationship is used to ascertain a desired focus position of the lens based upon the actual position of the living being's eye at the point in time. The second relationship is used to calculate a standard deviation defining a Gaussian blur kernel distribution. The calculating is based upon a difference between the adjusted focus position and the desired focus position of the lens.
机译:一种估计用于视觉虹膜识别的模糊核分布的方法,包括确定相机镜头的焦点对准位置与镜头与要通过镜头捕获图像的虹膜之间的距离之间的第一数学关系。第一关系用于估计透镜的焦点对准位置与限定高斯模糊核分布的标准偏差之间的第二数学关系。可以预测生物在将来的某个时间点的位置。基于眼睛的预测位置来调节相机镜头的焦点位置。焦点位置已调整的摄影机镜头可用于在该时间点生成人眼的图像。在该时间点处感测到生物的实际位置。第一关系用于基于生物体眼睛在该时间点的实际位置来确定透镜的期望聚焦位置。第二关系用于计算定义高斯模糊核分布的标准偏差。该计算基于调整后的焦点位置与镜头的所需焦点位置之间的差异。

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