New Scene-Based Nonuniformity Correction Algorithm of Infrared Focal-Plane Arrays

Yong-jin Liu, Hong Zhu, Yi-gong Zhao
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引用次数: 2

Abstract

The technique for nonuniformity correction in infrared focal-plane arrays is a typical blind-estimation problem, and the infrared images without noises are not available. In order to correct the observed images in the presence of the fixed-pattern noise caused by pixel-to-pixel nonuniformity, it is necessary to estimate the corresponding true scene values. A new scene-based nonuniformity correction algorithm is developed, which can use the interframe-prediction technique to achieve the estimates of true scene values. Therefore, we can predict the true value of the next uncorrected frame through the current corrected one. With these scene estimates and the corresponding observed values through a given array, a line-fitting procedure is used to estimate the individual detector response parameters, which can then be used to correct the nonuniformity. Thus, with a frame-by-frame iteration, the response parameters will converge to the optimum values. The strength of the algorithm lies in its high convergent speed despite the level of nonuniformity, and its ability of reducing ghosting artifacts is noticeable. The performance of the algorithm is demonstrated by the use of an ideal infrared image sequence with simulated nonuniformity and an actual infrared image sequence with real nonuniformity.
基于场景的红外焦平面阵列非均匀性校正新算法
红外焦平面阵列非均匀性校正技术是一个典型的盲估计问题,无法得到无噪声的红外图像。为了校正存在由像素间不均匀性引起的固定模式噪声的观测图像,需要估计相应的真实场景值。提出了一种新的基于场景的非均匀性校正算法,该算法利用帧间预测技术实现对真实场景值的估计。因此,我们可以通过当前的修正帧来预测下一个未修正帧的真实值。利用这些场景估计值和通过给定阵列的相应观测值,使用线拟合程序来估计单个探测器响应参数,然后可以使用该参数来纠正非均匀性。因此,通过逐帧迭代,响应参数将收敛到最优值。该算法的优点在于尽管存在一定程度的不均匀性,但它的收敛速度还是很快的,并且它在减少重影伪影方面的能力是显著的。通过模拟非均匀性的理想红外图像序列和具有非均匀性的实际红外图像序列,验证了该算法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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