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Radiometric calibration of a non-imaging airborne spectrometer to measure the Greenland ice sheet surface

机译:非成像空中光谱仪的辐射校准,测量格陵兰冰盖表面

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摘要

Methods to radiometrically calibrate a non-imaging airborne visible-to-shortwave infrared (VSWIR) spectrometer to measure the Greenland ice sheet surface are presented. Airborne VSWIR measurement performance for bright Greenland ice and dark bare rock/soil targets is compared against the MODerate resolution atmospheric TRANsmission (MODTRAN (R)) radiative transfer code (version 6.0), and a coincident Landsat 8 Operational Land Imager (OLI) acquisition on 29 July 2015 during an in-flight radiometric calibration experiment. Airborne remote sensing flights were carried out in northwestern Greenland in preparation for the Ice, Cloud, and land Elevation Satellite 2 (ICESat-2) laser altimeter mission. A total of nine science flights were conducted over the Greenland ice sheet, sea ice, and open-ocean water. The campaign's primary purpose was to correlate green laser pulse penetration into snow and ice with spectroscopic-derived surface properties. An experimental airborne instrument configuration that included a nadir-viewing (looking downward at the surface) non-imaging Analytical Spectral Devices (ASD) Inc. spectrometer that measured upwelling VSWIR (0.35 to 2.5 mu m) spectral radiance (W m(-2) sr(-1) mu m(-1)) in the two-color Slope Imaging Multi-polarization Photon-Counting Lidar's (SIMPL) ground instantaneous field of view, and a zenith-viewing (looking upward at the sky) ASD spectrometer that measured VSWIR spectral irradiance (W m(-2) nm(-1)) was flown. National Institute of Standards and Technology (NIST) traceable radiometric calibration procedures for laboratory, in-flight, and field environments are described in detail to achieve a targeted VSWIR measurement requirement of within 5 % to support calibration/validation efforts and remote sensing algorithm development. Our MODTRAN predictions for the 29 July flight line over dark and bright targets indicate that the airborne nadir-viewing spectrometer spectral radiance measurement uncertainty was between 0.6 % and 4.7 % for VSWIR wavelengths (0.4 to 2.0 mu m) with atmospheric transmittance greater than 80 %. MODTRAN predictions for Landsat 8 OLI relative spectral response functions suggest that OLI is measuring 6 % to 16 % more top-of-atmosphere (TOA) spectral radiance from the Greenland ice sheet surface than was predicted using apparent reflectance spectra from the nadir-viewing spectrometer. While more investigation is required to convert airborne VSWIR spectral radiance into atmospherically corrected airborne surface reflectance, it is expected that airborne science flight data products will contribute to spectroscopic determination of Greenland ice sheet surface optical properties to improve understanding of their potential influence on ICESat-2 measurements.
机译:提出了辐射校准非成像空气中可见的空间红外红外(VSWIR)光谱仪以测量格陵兰冰板表面的方法。与温度的大气传输(Modtran(R))辐射转移代码(6.0版)和一款重合的Landsat 8运营土地成像器(OLI)收购比较空气朗格岩石和暗岩/土地靶标的测量性能2015年7月29日在飞行的辐射校准实验期间。在格陵兰州西北部进行空中遥感航班,为冰,云和陆海拔卫星2(ICESAT-2)激光高度计任务进行准备。在格陵兰冰板,海冰和开阔的海水上进行了共有九种科学航班。竞选主要目的是将绿色激光脉冲渗透与光谱衍生的表面特性相关。一种实验空中仪器配置,包括Nadir-Viewing(俯视表面上)非成像分析谱器件(ASD)Inc.测量升高的vscir(0.35至2.5 mu m)光谱光谱(W m(-2) SR(-1)mu m(-1))在双色斜率成像多极化光子计数LiDar(Simple)地面的瞬时视​​野,以及在天空中查看(在天空上向上展示)ASD光谱仪测量的vscir光谱辐照度(w m(-2)nm(-1))捕获。美国国家标准和技术研究所(NIST)用于实验室,飞行中的可追踪辐射校准程序,在线和现场环境进行详细描述,以实现5%以内的目标vscir测量要求,以支持校准/验证工作和遥感算法开发。我们的Modtran预测在黑暗和明亮的目标上的29七月线路的预测表明,空气传播的Nadir-viTive谱仪光谱辐射度测量不确定度为VSWIR波长(0.4至2.0μm)的0.6%和4.7%,大气透射率大于80% 。 Landsat 8 Oli相对光谱响应函数的Modtran预测表明,Oli从格陵兰冰板表面测量6%至16%的大气层(TOA)光谱辐射,而不是使用Nadir-观赏光谱仪的表观反射光谱预测。虽然需要更多的调查来将空气传播的vscir光谱辐射转换为大气校正的空中表面反射率,但预计空中科学飞行数据产品将有助于为格陵兰冰盖表面光学性能的光谱测定,以改善对ICESAT-2的潜在影响的理解测量。

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  • 来源
    《Atmospheric Measurement Techniques》 |2019年第2期|共21页
  • 作者单位

    US Geol Survey Arctic Slope Reg Corp Fed InuTeq Earth Resources Observat &

    Sci Ctr Sci &

    Applicat Branch 47914 252nd St Sioux Falls SD 57198 USA;

    Air Force Res Lab Battlespace Surveillance Innovat Branch Kirtland AFB NM 87117 USA;

    Univ Maryland Earth Syst Sci Interdisciplinary Ctr 5825 Univ Res Court 4001 College Pk MD 20704 USA;

    Sci Syst &

    Applicat Inc 10210 Greenbelt Rd 600 Landham MD 20706 USA;

    Sci Syst &

    Applicat Inc 10210 Greenbelt Rd 600 Landham MD 20706 USA;

    NASA Biospher Sci Lab Goddard Space Flight Ctr Code 618 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Biospher Sci Lab Goddard Space Flight Ctr Code 618 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Laser Remote Sensing Lab Goddard Space Flight Ctr Code 694 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Cryospher Sci Lab Goddard Space Flight Ctr Code 615 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    NASA Res Serv Div Langley Res Ctr Code D1 1 NASA Dr Hampton VI 23666 USA;

    NASA Cryospher Sci Lab Goddard Space Flight Ctr Code 615 8800 Greenbelt Rd Greenbelt MD 20771 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
  • 关键词

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