Alternative method of on-orbit response-versus-scan-angle characterization for MODIS reflective solar bands

Abstract. The moderate resolution imaging spectroradiometer (MODIS) has 20 reflective solar bands (RSB), covering a spectral range from 0.41 to 2.2  μm, which are calibrated on-orbit using its onboard calibrators, which include a solar diffuser, a solar diffuser stability monitor, and a spectroradiometric calibration assembly. A space view (SV) port is used to provide a background reference and also facilitates near-monthly lunar observations through a spacecraft roll. In every scan, the Earth’s surface, SV, and onboard calibrators are viewed via a two-sided scan mirror, the reflectance of which depends on the angle of incidence (AOI) as well as the wavelength of the incident light. Response-versus-scan-angle (RVS) is defined as a dependence function of the scan mirror’s reflectance over AOI. An initial RVS for each RSB was measured prelaunch for both Terra and Aqua MODIS. Algorithms have been developed to track the on-orbit RVS variation using the measurements from the onboard calibrators, supplemented with the earth view (EV) trends from pseudoinvariant desert targets obtained at different AOI. Since the mission beginning, the MODIS characterization support team (MCST) has dedicated efforts in evaluating approaches of characterizing the on-orbit RVS. A majority of the approaches focused on fitting the data at each AOI over time and then deriving the relative change at different AOI. The current version of the on-orbit RVS algorithm, as implemented in the collection 6 (C6) level-1B (L1B), is also based on the above rationale. It utilizes the EV response trends from the pseudoinvariant Libyan desert targets to supplement the gain derived from the onboard calibrators. The primary limitation of this approach is the assumption of the temporal stability of these desert sites. Consequently, MCST developed an approach that derives the on-orbit RVS change using measurements from a single desert site, combined with the on-orbit lunar measurements. In addition, the EV and onboard responses are fit first as a function of AOI before fitting temporally in order to eliminate the dependence on the stability of the desert site. Comprehensive comparisons are performed with current C6 RVS results for both Terra and Aqua MODIS. Results demonstrate that this alternative method provides a supplemental means to monitor the on-orbit RVS for MODIS RSB.

[1]  P. Abel,et al.  MODIS Calibration: A Brief Review of the Strategy for the At-Launch Calibration Approach , 1996 .

[2]  Xiaoxiong Xiong,et al.  Intercomparison of On-Orbit Calibration Consistency Between Terra and Aqua MODIS Reflective Solar Bands Using the Moon , 2008, IEEE Geoscience and Remote Sensing Letters.

[3]  X. Xiong,et al.  Alternative approach to characterize response versus scan-angle (RVS) for MODIS reflective solar bands , 2011, Remote Sensing.

[4]  Xiaoxiong Xiong,et al.  Status of terra MODIS and aqua modis , 2003 .

[5]  Amit Angal,et al.  Progress and lessons from MODIS calibration intercomparison using ground test sites , 2010 .

[6]  Xiaoxiong Xiong,et al.  Multiyear On-Orbit Calibration and Performance of Terra MODIS Reflective Solar Bands , 2007, IEEE Transactions on Geoscience and Remote Sensing.

[7]  Amit Angal,et al.  Time-Dependent Response Versus Scan Angle for MODIS Reflective Solar Bands , 2014, IEEE Transactions on Geoscience and Remote Sensing.

[8]  Xiaoxiong Xiong,et al.  MODIS Reflective Solar Bands On-Orbit Lunar Calibration , 2007, IEEE Transactions on Geoscience and Remote Sensing.

[9]  Jun-Qiang Sun,et al.  MODIS reflective solar bands calibration algorithm and on-orbit performance , 2003, SPIE Asia-Pacific Remote Sensing.

[10]  M. Leroy,et al.  Selection and characterization of Saharan and Arabian desert sites for the calibration of optical satellite sensors , 1996 .

[11]  Xiaoxiong Xiong,et al.  Prelaunch algorithm and data format for the Level 1 calibration products for the EOS-AM1 Moderate Resolution Imaging Spectroradiometer (MODIS) , 1998, IEEE Trans. Geosci. Remote. Sens..

[12]  Xiaoxiong Xiong,et al.  MODIS solar diffuser stability monitor sun view modeling , 2005, IEEE Transactions on Geoscience and Remote Sensing.