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原位海洋水色辐射数据的光谱分辨率在卫星匹配分析中的影响。

Impact of spectral resolution of in situ ocean color radiometric data in satellite matchups analyses.

作者信息

Zibordi Giuseppe, Talone Marco, Voss Kenneth J, Johnson B Carol

出版信息

Opt Express. 2017 Aug 7;25(16):A798-A812. doi: 10.1364/OE.25.00A798.

Abstract

The spectral resolution requirements for in situ remote sensing reflectanceR measurements aiming at supporting satellite ocean color validation and System Vicarious Calibration (SVC) were investigated. The study, conducted using sample hyperspectral R from different water types, focused on the visible spectral bands of the ocean land color imager (OLCI) and of the Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) satellite sensors. Allowing for a ±0.5% maximum difference between in situ and satellite derived R solely due to the spectral band characteristics of the in situ radiometer, a spectral resolution of 1 nm for SVC of PACE is needed in oligotrophic waters. Requirements decrease to 3 nm for SVC of OLCI. In the case of validation activities, which exhibit less stringent uncertainty requirements with respect to SVC, a maximum difference of ±1% between in situ and satellite derived data indicates the need for a spectral resolution of 3 nm for both OLCI and PACE in oligotrophic waters. Conversely, spectral resolutions of 6 nm for PACE and 9 nm for OLCI appear to satisfy validation activities in optically complex waters.

摘要

研究了旨在支持卫星海洋颜色验证和系统替代校准(SVC)的现场遥感反射率R测量的光谱分辨率要求。该研究使用来自不同水型的样本高光谱R进行,重点关注海洋陆地颜色成像仪(OLCI)和浮游生物、气溶胶、云、海洋生态系统(PACE)卫星传感器的可见光谱带。仅考虑由于现场辐射计的光谱带特性导致的现场和卫星衍生R之间最大±0.5%的差异,贫营养水域中PACE的SVC需要1 nm的光谱分辨率。OLCI的SVC要求降至3 nm。在验证活动中,与SVC相比,不确定性要求不太严格,现场和卫星衍生数据之间最大±1%的差异表明,贫营养水域中OLCI和PACE都需要3 nm的光谱分辨率。相反,PACE的6 nm和OLCI的9 nm光谱分辨率似乎满足光学复杂水域的验证活动。

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