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An Efficient Shutter-Less Non-Uniformity Correction Method for Infrared Focal Plane Arrays

机译:一种用于红外焦平面阵列的有效快门的非均匀性校正方法

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The non-uniformity response in infrared focal plane array (IRFPA) detectors has a bad effect on images with fixed pattern noise. At present, it is common to use shutter to prevent from radiation of target and to update the parameters of non-uniformity correction in the infrared imaging system. The use of shutter causes 'freezing' image. And inevitably, there exists the problems of the instability and reliability of system, power consumption, and concealment of infrared detection. In this paper, we present an efficient shutter-less non-uniformity correction (NUC) method for infrared focal plane arrays. The infrared imaging system can use the data gaining in thermostat to calculate the incident infrared radiation by shell real-timely. And the primary output of detector except the shell radiation can be corrected by the gain coefficient. This method has been tested in real infrared imaging system, reaching high correction level, reducing fixed pattern noise, adapting wide temperature range.
机译:红外焦平面阵列(IRFPA)检测器中的不均匀性响应对具有固定图案噪声的图像具有不良影响。目前,通常使用快门来防止目标的辐射并在红外成像系统中更新非均匀性校正的参数。使用快门导致“冻结”图像。不可避免地,存在系统,功耗和红外检测隐藏的不稳定性和可靠性存在问题。在本文中,我们提出了一种用于红外焦平面阵列的有效快门的不均匀性校正(NUC)方法。红外成像系统可以使用恒温器中获得的数据来实时地通过外壳计算入射的红外辐射。除了外壳辐射之外,检测器的主要输出可以通过增益系数来校正。该方法已经在真正的红外成像系统中进行了测试,达到高校正水平,减少固定图案噪声,适应宽温度范围。

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