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On an Adaptive Scene-based Gray Super-resolution Technique of Infrared Focal Plane Array Imaging System

机译:基于自适应场景的灰度超分辨率技术,红外焦平面阵列成像系统

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When infrared focal plane array imaging system detects targets, especially small targets, there is the problem of low gray resolution. In this paper, an adaptive scene-based gray super-resolution technique is proposed, aiming to solve the problem. The paper gives a detailed description on the method of image gray super-resolution by adjusting the signal sample range in infrared focal plane array (IRFPA) imaging system. The method contains the following three parts: extracting the effective gray range from the scene, and obtaining the basis of super-resolution adjustment; providing the adjusting parameters after filter-predicting the basis of adjustment, combining with the adaptive LMS-based filtering algorithm; and completing gray super-resolution by controlling the parameters in super-resolution circuit. Finally, the total solution is experiment validated. The experiment in infrared focal plane array imaging system has proven the feasibility and effectiveness of this method, and the improvement of super-resolution. Then test set shows the MRTD can be increased more than one time.
机译:当红外焦平面阵列成像系统检测到目标,特别是小目标时,存在低灰度分辨率的问题。本文提出了一种自适应场景的灰度超分辨率技术,旨在解决问题。本文通过调整红外焦平面阵列(IRFPA)成像系统中的信号采样范围来提供关于图像灰度超分辨率的方法的详细描述。该方法包含以下三个部分:从场景中提取有效的灰色范围,并获得超分辨率调整的基础;在过滤器预测调整基础之后提供调整参数,与基于自适应LMS的滤波算法相结合;并通过控制超分辨率电路中的参数来完成灰度超分辨率。最后,验证了总解决方案。红外焦平面阵列成像系统的实验已经证明了这种方法的可行性和有效性,以及超分辨率的提高。然后测试集显示MRTD可以增加多次。

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