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IRLS: basic design and future challenges

机译:IRLS:基本设计和未来挑战

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Abstract: Infrared line scanners (IRLS) are a powerful means of gathering very large amounts of pictorial and spectral information from airborne and space platforms. Types of line scanners are reviewed and some of their more important applications are noted ranging from the ultra-violet to the 7.5 to 14 micrometer spectral bands. Prior to detail design a thorough system requirements analysis and tradeoff study is recommended to assure that the IRLS will meet the objectives of its military, commercial or scientific mission. This process is outlined for a low altitude penetration reconnaissance mission using the 7.5 to 14 micrometer IR band. Detail IRLS design is outlined and the most important system equations are discussed, including NER (noise equivalent radiance), NETD (noise equivalent temperature difference), MRTD (minimum resolvable temperature difference) and MTF (modulation transfer function). Tradeoffs involved in data processing and display to end users are noted. Future challenges include sensor fusion, size and cost reduction with improved spatial and thermal resolution. Both present and new IRLS designs will play important roles well into the next century. !1
机译:摘要:红外线扫描仪(IRLS)是一种强大的手段,可以从机载和太空平台收集大量的图形和光谱信息。回顾了线扫描仪的类型,并指出了它们的一些更重要的应用,范围从紫外线到7.5到14微米的光谱带。在进行详细设计之前,建议进行全面的系统需求分析和权衡研究,以确保IRLS能够满足其军事,商业或科学任务的目标。对于使用7.5至14微米IR波段的低空穿透侦察任务,概述了此过程。详细介绍了IRLS设计,并讨论了最重要的系统方程,包括NER(噪声等效辐射度),NETD(噪声等效温差),MRTD(最小可分辨温度差)和MTF(调制传递函数)。记录了数据处理和显示给最终用户的权衡取舍。未来的挑战包括传感器融合,尺寸减小和成本降低以及改善的空间和热分辨率。当前和新的IRLS设计都将在下一世纪发挥重要作用。 !1

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