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Third-generation imaging sensor system concepts

机译:第三代成像传感器系统概念

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Abstract: Second generation forward looking infrared sensors, based on either parallel scanning, long wave (8 - 12 um) time delay and integration HgCdTe detectors or mid wave (3 - 5 um), medium format staring (640 $MUL 480 pixels) InSb detectors, are being fielded. The science and technology community is now turning its attention toward the definition of a future third generation of FLIR sensors, based on emerging research and development efforts. Modeled third generation sensor performance demonstrates a significant improvement in performance over second generation, resulting in enhanced lethality and survivability on the future battlefield. In this paper we present the current thinking on what third generation sensors systems will be and the resulting requirements for third generation focal plane array detectors. Three classes of sensors have been identified. The high performance sensor will contain a megapixel or larger array with at least two colors. Higher operating temperatures will also be the goal here so that power and weight can be reduced. A high performance uncooled sensor is also envisioned that will perform somewhere between first and second generation cooled detectors, but at significantly lower cost, weight, and power. The final third generation sensor is a very low cost micro sensor. This sensor can open up a whole new IR market because of its small size, weight, and cost. Future unattended throwaway sensors, micro UAVs, and helmet mounted IR cameras will be the result of this new class.!0
机译:摘要:第二代前瞻性红外传感器,基于并行扫描,长波(8-12 um)时间延迟和集成HgCdTe检测器或中波(3-5 um),中等格式凝视(640 $ MUL 480像素)InSb探测器,正在部署。基于新兴的研发成果,科学技术界现在正在将注意力转向对未来第三代FLIR传感器的定义。建模的第三代传感器性能证明其性能比第二代显着提高,从而增强了未来战场上的杀伤力和生存能力。在本文中,我们提出了关于第三代传感器系统将是什么以及对第三代焦平面阵列检测器的最终要求的当前思路。已经确定了三类传感器。高性能传感器将包含至少具有两种颜色的百万像素或更大的阵列。更高的工作温度也将是此处的目标,以便降低功率和重量。还设想了一种高性能的非冷却传感器,其性能将介于第一代和第二代冷却探测器之间,但成本,重量和功率要低得多。最后的第三代传感器是成本非常低的微型传感器。由于其体积小,重量轻和成本低,该传感器可以开拓一个全新的红外市场。未来的无人值守一次性传感器,微型无人机和头盔式红外摄像机将成为这一新类别的成果。!0

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