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Airborne measurements in the infrared using FTIR-based imaging hyperspectral sensors

机译:使用基于FTIR的成像高光谱传感器进行红外中的机载测量

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Hyperspectral ground mapping is being used in an ever-increasing extent for numerous applications in the military, geology and environmental fields. The different regions of the electromagnetic spectrum help produce information of differing nature. The visible, near-infrared and short-wave infrared radiation (400 nm to 2.5 μm) has been mostly used to analyze reflected solar light, while the mid-wave (3 to 5 urn) and long-wave (8 to 12 μm or thermal) infrared senses the self-emission of molecules directly, enabling the acquisition of data during night time.rnPush-broom dispersive sensors have been typically used for airborne hyperspectral mapping. However, extending the spectral range towards the mid-wave and long-wave infrared brings performance limitations due to the self emission of the sensor itself. The Fourier-transform spectrometer technology has been extensively used in the infrared spectral range due to its high transmittance as well as throughput and multiplex advantages, thereby reducing the sensor self-emission problem.rnTelops has developed the Hyper-Cam, a rugged and compact infrared hyperspectral imager. The Hyper-Cam is based on the Fourier-transform technology yielding high spectral resolution and enabling high accuracy radiometric calibration. It provides passive signature measurement capability, with up to 320x256 pixels at spectral resolutions of up to 0.25 cm-1. The Hyper-Cam has been used on the ground in several field campaigns, including the demonstration of standoff chemical agent detection. More recently, the Hyper-Cam has been integrated into an airplane to provide airborne measurement capabilities. A special pointing module was designed to compensate for airplane attitude and forward motion. To our knowledge, the Hyper-Cam is the first commercial airborne hyperspectral imaging sensor based on Fourier-transform infrared technology. The first airborne measurements and some preliminary performance criteria for the Hyper-Cam are presented in this paper.
机译:高光谱地面测绘越来越广泛地用于军事,地质和环境领域的众多应用中。电磁频谱的不同区域有助于产生不同性质的信息。可见,近红外和短波红外辐射(400 nm至2.5μm)主要用于分析反射的太阳光,而中波(3至5 um)和长波(8至12μm或热红外可以直接感应分子的自我发射,从而可以在夜间进行数据采集。推扫式色散传感器通常用于机载高光谱制图。然而,由于传感器自身的自发光,将光谱范围扩展到中波和长波红外带来了性能限制。傅立叶变换光谱仪技术因其高透射率以及高通量和多路传输的优势而被广泛用于红外光谱范围,从而减少了传感器的自发射问题.rnTelops开发了坚固耐用的紧凑型红外Hyper-Cam高光谱成像仪。 Hyper-Cam基于傅立叶变换技术,可产生高光谱分辨率并实现高精度辐射校准。它提供了无源签名测量功能,在高达0.25 cm-1的光谱分辨率下具有多达320x256像素。 Hyper-Cam已在一些野战中被实地使用,包括对峙化学试剂检测的演示。最近,Hyper-Cam已集成到飞机中以提供空中测量功能。设计了特殊的指向模块以补偿飞机的姿态和向前运动。据我们所知,Hyper-Cam是第一个基于傅立叶变换红外技术的商用机载高光谱成像传感器。本文介绍了Hyper-Cam的首次空中测量和一些初步性能标准。

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