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Uniformity compensation for high-quantum-efficiency focal plane arrays

机译:高量子效率焦平面阵列的均匀性补偿

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Abstract: NSWCDD has developed a new nonuniformity correction (NUC) technique that promises to significantly reduce both fixed pattern and temporal noise in sensors using high quantum efficiency (QE) infrared (IR) staring focal plane arrays (FPA). Sensors using this technique will also have good response in every pixel. There will be no dead or anomalously noisy pixels anywhere in the field of view (FOV). This technique will also enable development of sensors with very small apertures as well as those which can dynamically trade off sensitivity, resolution and frame rate. In addition, effective yield of detector production will be enhanced, since these benefits can be obtained using arrays that would be rejected for most applications, were conventional NUC used. This technique has been demonstrated to work as claimed through non-real time post-processing of field data. A high performance, concept demonstration sensor, is being developed, with delivery planned for August 1996. !5
机译:摘要:NSWCDD开发了一种新的非均匀性校正(NUC)技术,该技术有望使用高量子效率(QE)红外(IR)凝视焦平面阵列(FPA)来显着降低传感器中的固定模式和时间噪声。使用此技术的传感器在每个像素中也将具有良好的响应。视场(FOV)中的任何地方都不会有死角或异常嘈杂的像素。该技术还将使开发具有很小孔径的传感器以及那些可以动态权衡灵敏度,分辨率和帧速率的传感器成为可能。此外,由于使用常规NUC可以使用大多数应用所拒绝的阵列,因此可以获得这些好处,因此可以提高检测器生产的有效产量。通过现场数据的非实时后处理,已证明该技术可以按要求工作。正在开发一种高性能的概念验证传感器,计划于1996年8月交付。5

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