Simplified measurement of point spread functions of hyperspectral cameras for assessment of spatial coregistration

被引:4
作者
Skauli, Torbjorn [1 ]
Torkildsen, Hans Erling [1 ]
机构
[1] Norwegian Def Res Estab FFI, POB 25, N-2027 Kjeller, Norway
来源
ALGORITHMS, TECHNOLOGIES, AND APPLICATIONS FOR MULTISPECTRAL AND HYPERSPECTRAL IMAGERY XXV | 2019年 / 10986卷
关键词
Hyperspectral imaging; Multispectral imaging; Remote sensing; Optical design; Coregistration; Modulation transfer function;
D O I
10.1117/12.2520219
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In multi- and hyperspectral imaging, spatial coregistration of the point spread functions (PSFs) of all bands within each pixel is critical for the integrity of measured spectra. There is a need to define a standardized method for characterizing coregistration error. We propose a method that estimates PSFs from the product of line spread functions (LSFs) recorded in two orthogonal directions. Coregistration is then evaluated according to the PSF difference metric [T. Skauli, Opt. Expr. vol. 20, p. 918 (2012)]. Experimental results on two pushbroom hyperspectral cameras show good correspondence with measurements based on the full PSF, provided that LSF scan directions are aligned with axes of symmetry in the optics. Even a maximally unfavourable choice of scan directions gives meaningful estimates of coregistration error. The proposed method may have potential as a standard for coregistration characterization.
引用
收藏
页数:8
相关论文
共 9 条
  • [1] Design and characterization of specMACS, a multipurpose hyperspectral cloud and sky imager
    Ewald, Florian
    Koelling, Tobias
    Baumgartner, Andreas
    Zinner, Tobias
    Mayer, Bernhard
    [J]. ATMOSPHERIC MEASUREMENT TECHNIQUES, 2016, 9 (05) : 2015 - 2042
  • [2] Method for quantifying image quality in push-broom hyperspectral cameras
    Hoye, Gudrun
    Loke, Trond
    Fridman, Andrei
    [J]. OPTICAL ENGINEERING, 2015, 54 (05)
  • [3] NPP VIIRS Geometric Performance Status
    Lin, Guoqing
    Wolfe, Robert E.
    Nishihama, Masahiro
    [J]. EARTH OBSERVING SYSTEMS XVI, 2011, 8153
  • [4] Review of high fidelity imaging spectrometer design for remote sensing
    Mouroulis, Pantazis
    Green, Robert O.
    [J]. OPTICAL ENGINEERING, 2018, 57 (04)
  • [5] An upper-bound metric for characterizing spectral and spatial coregistration errors in spectral imaging
    Skauli, Torbjorn
    [J]. OPTICS EXPRESS, 2012, 20 (02): : 918 - 933
  • [6] Quantifying coregistration errors in spectral imaging
    Skauli, Torbjorn
    [J]. IMAGING SPECTROMETRY XVI, 2011, 8158
  • [7] Characterization of a compact 6-band multifunctional camera based on patterned spectral filters in the focal plane
    Torkildsen, H. E.
    Hovland, H.
    Opsahl, T.
    Haavardsholm, T. V.
    Nicolas, S.
    Skauli, T.
    [J]. ALGORITHMS AND TECHNOLOGIES FOR MULTISPECTRAL, HYPERSPECTRAL, AND ULTRASPECTRAL IMAGERY XX, 2014, 9088
  • [8] Full characterization of spatial coregistration errors and spatial resolution in spectral imagers
    Torkildsen, Hans Erling
    Skauli, Torbjorn
    [J]. OPTICS LETTERS, 2018, 43 (16) : 3814 - 3817
  • [9] Torkildsen Hans Erling, 2018, P SOC PHOTO-OPT INS, V10644