Universities Space Research Association, Columbia, MD 21046, USA.
Earth Sciences, NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA.
Sensors (Basel). 2020 Aug 19;20(17):4682. doi: 10.3390/s20174682.
Solar induced fluorescence (SIF) is an ecological variable of interest to remote sensing retrievals, as it is directly related to vegetation composition and condition. FIREFLY (fluorescence imaging of red and far-red light yield) is a high performance spectrometer for estimating SIF. FIREFLY was flown in conjunction with NASA Goddard's lidar, hyperspectral, and thermal (G-LiHT) instrument package in 2017, as a technology demonstration for airborne retrievals of SIF. Attributes of FIREFLY relevant to SIF retrieval, including detector response and linearity; full-width at half maximum (FWHM); stray light; dark current; and shot noise were characterized with a combination of observations from Goddard's laser for absolute measurement of radiance calibration facility; an integrating sphere; controlled acquisitions of known targets; in-flight acquisitions; and forward modelling. FWHM, stray light, and dark current were found to be of acceptable magnitude, and characterized to within acceptable limits for SIF retrieval. FIREFLY observations were found to represent oxygen absorption features, along with a large number of solar absorption features. Shot noise was acceptable for direct SIF retrievals at native resolution, but indirect SIF retrievals from absorption features would require spatial aggregation, or repeated observations of targets.
太阳诱导荧光(SIF)是遥感反演中感兴趣的生态变量,因为它与植被组成和状况直接相关。FIREFLY(红光和远红光荧光成像的产量)是一种高性能光谱仪,用于估计 SIF。FIREFLY 于 2017 年与美国宇航局戈达德的激光、高光谱和热(G-LiHT)仪器包一起飞行,作为机载 SIF 反演的技术演示。与 SIF 反演相关的 FIREFLY 属性,包括探测器响应和线性度;半峰全宽(FWHM);杂散光;暗电流;和散粒噪声,通过戈达德的激光进行绝对辐射校准设施测量的观测、积分球、已知目标的受控采集、飞行中采集和正向建模的组合进行了描述。发现 FWHM、杂散光和暗电流的幅度在可接受的范围内,并在可接受的 SIF 反演范围内进行了特征描述。FIREFLY 观测结果表示氧吸收特征,以及大量的太阳吸收特征。在原生分辨率下,散粒噪声可用于直接 SIF 反演,但来自吸收特征的间接 SIF 反演则需要空间聚合,或对目标进行重复观测。