Development and application of airborne and aerospace hyperspectral imager press for high precision geometry and spectral calibration of pixels of image cube. The research of geometry and spectral calibration of pushbroom hyperspectral imager, its target is giving the coordinate of angle field of view and center wavelength of each detect unit in focal plane detector of hyperspectral imager, and achieves the high precision, full field of view, full channel geometry and spectral calibration. It is importance for imaging quantitative and deep application of hyperspectal imager. The paper takes the geometry and spectral calibration of pushbroom dispersive hyperspectral imager as case study, and research on the constitution and analysis of imaging mathematical model. Aimed especially at grating-dispersive hyperspectral imaging, the specialty of the imaging mode and dispersive method has been concretely analyzed. Based on the analysis, the theory and feasible method of geometry and spectral calibration of dispersive hyperspectral imager is set up. The key technique has been solved is As follows: 1). the imaging mathematical model and feasible method of geometry and spectral calibration for full pixels of image cube has been set up, the feasibility of the calibration method has been analyzed. 2). the engineering model and method of the geometry and spectral calibration of pushbroom dispersive hyperspectral imager has been set up and the calibration equipment has been constructed, and the calibration precision has been analyzed.
[1]
Qingxi Tong,et al.
Development and application of hyperspectral remote sensing in China
,
1998,
Asia-Pacific Environmental Remote Sensing.
[2]
K. Staenz,et al.
Review of Canadian Airborne and Space Activities in Hyperspectral Remote Sensing
,
2002
.
[3]
Michael E. Schaepman,et al.
Calibration concept for potential optical aberrations of the APEX pushbroom imaging spectrometer
,
2004,
SPIE Remote Sensing.
[4]
Jens Nieke,et al.
Imaging spaceborne and airborne sensor systems in the beginning of the next century
,
1997,
Remote Sensing.
[5]
R.J. Birk,et al.
Airborne hyperspectral sensor systems
,
1994,
IEEE Aerospace and Electronic Systems Magazine.
[6]
Yi Ma,et al.
Advance in marine technique and application research of airborne hyperspectral remote sensing in China
,
2003,
SPIE Asia-Pacific Remote Sensing.
[7]
Shen Mm,et al.
AIRBORNE IMAGING SPECTROMETER SYSTEM
,
1998
.