Simulation of Optical Remote-Sensing Scenes With Application to the EnMAP Hyperspectral Mission

被引:93
作者
Guanter, Luis [1 ]
Segl, Karl [1 ]
Kaufmann, Hermann [1 ]
机构
[1] Geoforschungszentrum Potsdam, German Res Ctr Geosci, Remote Sensing Sect, Helmholtz Ctr Potsdam, D-14473 Potsdam, Germany
来源
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING | 2009年 / 47卷 / 07期
关键词
Environmental Mapping and Analysis Program (EnMAP); imaging spectroscopy; instrumental noise; nonuniformity; radiative transfer; scene simulation; LOOKING IMAGING SPECTROMETERS; SURFACE REFLECTANCE; SPECTROSCOPY; REQUIREMENT; SENSOR; CLOUD;
D O I
10.1109/TGRS.2008.2011616
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The simulation of remote-sensing images is a useful tool for a variety of tasks, such as the definition of future Earth Observation systems, the optimization of instrument specifications, and the development and validation of data processing algorithms. A scene simulator for optical hyperspectral and multispectral data has been implemented in the frame of the Environmental Mapping and Analysis Program (EnMAP) mission. EnMAP is a German-built hyperspectral space sensor scheduled for launch in 2012. EnMAP will measure in the 420-2450-nm spectral range at a varying spectral sampling of 6.5-10 mn. Images will cover 30 x 30 km areas at an approximate ground sampling distance of 30 in. The EnMAP scene simulator presented in this paper is able to generate realistic EnMAP-like data in an automatic way under a set of user-driven instrumental and scene parameters. Radiance and digital numbers data are generated by five sequential processing modules which are able to produce data over a range of natural environments, acquisition and illumination geometries, cloud covers, and instrument configurations. The latter include the simulation of data nominiformity in the spatial and spectral domains, spatially coherent and noncoherent instrumental noise, and instrument's modulation transfer function. Realistic surface patterns for the simulated data are provided by existing remote-sensing data in different environments, from dry geological sites to green vegetation areas. A flexible radiative transfer simulation scheme enables the generation of different illumination, observation, and atmospheric conditions. The methodology applied to the complete scene simulation and some sample results are presented and analyzed in this paper.
引用
收藏
页码:2340 / 2351
页数:12
相关论文
共 45 条
[1]   SPOT-4 - A NEW GENERATION OF SPOT SATELLITES [J].
ARNAUD, M ;
LEROY, M .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 1991, 46 (04) :205-215
[2]   The PROBA/CHRIS mission: A low-cost smallsat for hyperspectral multiangle observations of the earth surface and atmosphere [J].
Barnsley, MJ ;
Settle, JJ ;
Cutter, MA ;
Lobb, DR ;
Teston, F .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2004, 42 (07) :1512-1520
[3]   Quality assessment of several methods to recover surface reflectance using synthetic imaging spectroscopy data [J].
Ben-Dor, E ;
Kindel, B ;
Goetz, AFH .
REMOTE SENSING OF ENVIRONMENT, 2004, 90 (03) :389-404
[4]   MODTRAN cloud and multiple scattering upgrades with application to AVIRIS [J].
Berk, A ;
Bernstein, LS ;
Anderson, GP ;
Acharya, PK ;
Robertson, DC ;
Chetwynd, JH ;
Adler-Golden, SM .
REMOTE SENSING OF ENVIRONMENT, 1998, 65 (03) :367-375
[5]  
Berk A., 2003, MODTRAN4 VERSION 3 R
[6]   SENSOR:: a tool for the simulation of hyperspectral remote sensing systems [J].
Börner, A ;
Wiest, L ;
Keller, P ;
Reulke, R ;
Richter, R ;
Schaepman, M ;
Schläpfer, D .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2001, 55 (5-6) :299-312
[7]  
Cocks T, 1998, 1ST EARSEL WORKSHOP ON IMAGING SPECTROSCOPY, P37
[8]   Construction of synthetic spectral reflectance of remotely sensed imagery for planning purposes [J].
Feingersh, Tal ;
Ben-Dor, Eyal ;
Portugali, Juval .
ENVIRONMENTAL MODELLING & SOFTWARE, 2007, 22 (03) :335-348
[9]   Numerical simulation of the light field in the atmosphere-ocean system using the matrix-operator method [J].
Fell, F ;
Fischer, J .
JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2001, 69 (03) :351-388
[10]   HATCH: Results from simulated radiances, AVIRIS and Hyperion [J].
Goetz, AFH ;
Kindel, BC ;
Ferri, M ;
Qu, Z .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2003, 41 (06) :1215-1222