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Mako airborne thermal infrared imaging spectrometer - performance update

机译:Mako机载红外热成像光谱仪-性能更新

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The Aerospace Corporation's sensitive Mako thermal infrared imaging spectrometer, which operates between 7.6 and 13.2 microns at a spectral sampling of 44 nm, and flies in a DeHavilland DHC-6 Twin Otter, has undergone significant changes over the past year that have greatly increased its performance. A comprehensive overhaul of its electronics has enabled frame rates up to 3255 Hz and noise reductions bringing it close to background-limited. A replacement diffraction grating whose peak efficiency was tuned to shorter wavelength, coupled with new AR coatings on certain key optics, has improved the performance at the short wavelength end by a factor of 3, resulting in better sensitivity for methane detection, for example. The faster frame rate has expanded the variety of different scan schemes that are possible, including multi-look scans in which even sizeable target areas can be scanned multiple times during a single overpass. Off-nadir scanning to ±56.4° degrees has also been demonstrated, providing an area scan rate of 33 km~2/minute for a 2-meter ground sampling distance (GSD) at nadir. The sensor achieves a Noise Equivalent Spectral Radiance (NESR) of better than 0.6 microflicks (μf, 10~(-6) W/sr/cm~2/μm) in each of the 128 spectral channels for a typical airborne dataset in which 4 frames are co-added. An additional improvement is the integration of a new commercial 3D stabilization mount which is significantly better at compensating for aircraft motions and thereby maintains scan performance under quite turbulent flying conditions. The new sensor performance and capabilities are illustrated.
机译:航空航天公司的灵敏的Mako热红外成像光谱仪在44 nm的光谱采样下工作在7.6和13.2微米之间,并且飞行在DeHavilland DHC-6 Twin Otter中,在过去的一年中发生了重大变化,极大地提高了其性能。对其电子设备进行的全面检修使帧频高达3255 Hz,并降低了噪声,使其接近背景极限。替换后的衍射光栅的峰值效率被调整为较短的波长,再加上某些关键光学器件上的新型增透膜,将短波长端的性能提高了3倍,从而提高了甲烷检测的灵敏度。更快的帧速率扩大了可能的各种扫描方案的范围,包括多视点扫描,在这种扫描中,即使是较大尺寸的目标区域也可以在一次立交期间被扫描多次。还证明了离天底扫描的精度为±56.4°,在天底下2米地面采样距离(GSD)下,区域扫描速度为33 km / 2 /分钟。对于典型的机载数据集,在128个光谱通道中的每一个中,该传感器在128个光谱通道中的噪声等效光谱辐射度(NESR)均优于0.6微片(μf,10〜(-6)W / sr / cm〜2 /μm)。框架是共同添加的。另一个改进是集成了新的商用3D稳定支架,该支架在补偿飞机运动方面明显更好,因此可以在非常动荡的飞行条件下保持扫描性能。说明了新的传感器性能和功能。

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