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Scene-based nonuniformity correction technique that exploits knowledge of the focal-plane array readout architecture

机译:基于场景的非均匀性校正技术,利用焦平面阵列读出架构的知识

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摘要

Spatial fixed-pattern noise is a common and major problem in modern infrared imagers owing to the nonuniform response of the photodiodes in the focal plane array of the imaging system. In addition, the nonuniform response of the readout and digitization electronics, which are involved in multiplexing the signals from the photodiodes, causes further nonuniformity. We describe a novel scene based on a nonuniformity correction algorithm that treats the aggregate nonuniformity in separate stages. First, the nonuniformity from the readout amplifiers is corrected by use of knowledge of the readout architecture of the imaging system. Second, the nonuniformity resulting from the individual detectors is corrected with a nonlinear filter-based method. We demonstrate the performance of the proposed algorithm by applying it to simulated imagery and real infrared data. Quantitative results in terms of the mean absolute error and the signal-to-noise ratio are also presented to demonstrate the efficacy of the proposed algorithm. One advantage of the proposed algorithm is that it requires only a few frames to obtain high-quality corrections.
机译:由于成像系统的焦平面阵列中光电二极管的响应不均匀,因此空间固定模式噪声是现代红外成像器中常见的主要问题。另外,涉及多路复用来自光电二极管的信号的读出和数字化电子设备的不均匀响应引起进一步的不均匀。我们描述了一种基于非均匀性校正算法的新颖场景,该算法在单独的阶段处理聚合的非均匀性。首先,通过使用成像系统的读出架构的知识来校正来自读出放大器的不均匀性。其次,使用基于非线性滤波器的方法校正由各个检测器引起的不均匀性。通过将其应用于模拟图像和真实红外数据,我们演示了该算法的性能。还给出了基于平均绝对误差和信噪比的定量结果,以证明所提出算法的有效性。所提出的算法的一个优点是,它仅需要几个帧即可获得高质量的校正。

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