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Ultraspectral imaging: A new contribution to global virtual presence

机译:超光谱成像:对全球虚拟形象的新贡献

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摘要

A new technology, Ultraspectral Imaging (USI) offers the capability to extend spectral imaging to a level where molecular adsorption or emission line features can be presented in a two-dimensional display. With these capabilities, unambiguous identification and mapping of gaseous constituents or solid material by their spectral features becomes possible. One of the techniques that shows the potential to collect these type of data is a proposed USI-based on a Fourier transform ultraspectral imager operating in the 3 pm to 5 pm and 8 pm to 12 pm bands designed for installation in an aircraft. This proposed instrument will have a 15 degree field of view (FOV), with an instantaneous field of view (IFOY) of 1.0 mrad. The target spectral resolution is better than 1.5 cm/sub -1/over 2000 to 3000 cm/sub -1/and 0.4 cm/sub -1/over 850 to 1250 cm/sub -1/using 512 spectral channels. The device will use a variety of spectral enhancement techniques to achieve this unprecedented spectral resolution. Computer simulations of the optical systems demonstrate subwavenumber resolutions and signal to noise ratios of over 900.
机译:超光谱成像(USI)是一种新技术,能够将光谱成像扩展到可以在二维显示器中显示分子吸附或发射谱线特征的水平。借助这些功能,可以通过其光谱特征明确识别和绘制气态成分或固体材料。一种显示出收集此类数据潜力的技术是一种建议的基于USI的基于傅立叶变换的超光谱成像仪,该成像仪在3 pm至5 pm和8 pm至12 pm的频带中运行,这些频带设计用于飞机上。拟议中的仪器将具有15度视场(FOV),瞬时视场(IFOY)为1.0 mrad。使用512个光谱通道,目标光谱分辨率优于2000至3000 cm / sub -1 /的1.5 cm / sub -1 /和850至1250 cm / sub -1 /的0.4 cm / sub -1 /。该设备将使用多种频谱增强技术来实现这一前所未有的频谱分辨率。光学系统的计算机仿真显示了亚波数分辨率和超过900的信噪比。

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