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Improved interframe registration based nonuniformity correction for focal plane arrays

机译:改进的基于帧间配准的焦平面阵列非均匀性校正

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In this paper, an improved interframe registration based nonuniformity correction algorithm for focal plane arrays is proposed. The method simultaneously estimates detector parameters and carries out the nonuniformity correction by minimizing the mean square error between the two properly registered image frames. A new masked phase correlation algorithm is introduced to obtain reliable shift estimates in the presence of fixed pattern noise. The use of an outliers exclusion scheme, together with a variable step size strategy, could not only promote the correction precision considerably, but also eliminate ghosting artifacts effectively. The performance of the proposed algorithm is evaluated with clean infrared image sequences with simulated nonuniformity and real pattern noise. We also apply the method to a real-time imaging system to show how effective it is in reducing noise and the ghosting artifacts.
机译:提出了一种改进的基于帧间配准的焦平面阵列非均匀性校正算法。该方法同时估计检测器参数,并通过最小化两个正确配准的图像帧之间的均方误差来执行不均匀性校正。引入了一种新的掩蔽相位相关算法,以在存在固定模式噪声的情况下获得可靠的偏移估计。异常值排除方案与可变步长策略的结合使用,不仅可以大大提高校正精度,而且可以有效消除重影伪影。所提算法的性能通过具有模拟不均匀性和真实图案噪声的干净红外图像序列进行评估。我们还将该方法应用于实时成像系统,以显示该方法在减少噪声和重影伪影方面的有效性。

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