TY - JOUR
T1 - In-situ spectral reflectance measurement of off-axis paraboloidal reflector with a large aperture for radiometric calibration
AU - Zhang, Ying
AU - Zhao, Huijie
AU - Zhou, Pengwei
AU - Li, Chongchong
PY - 2014
Y1 - 2014
N2 - Off-axis paraboloidal reflector with a large aperture is often used as a collimator in radiometric calibration system in the space environment or a simulator for space carrier. Spectral reflectance measurement of the reflector is an important issue that determines the accuracy of radiometric calibration, especially, for imaging spectrometer. Currently, the reflectance of the reflector is generally measured by the sample contrast method. So, only a small sample of the reflector rather than the whole can be measured. In order to overcome this limitation, a method for in-situ measuring spectral reflectance of off-axis paraboloidal reflector, especially, with a large aperture, is proposed in this paper. First of all, the proposed in-situ measurement approach is designed according to in-situ contrast measurement. Then, the proposed measurement is realized and evaluated in experiment for measuring spectral reflectance of an off-axis paraboloidal reflector with an aperture of 110 mm. Finally, the influence of prodigious temperature fluctuation on the measurement is experimentally investigated and the impact of optical devices and environment on the uncertainty is analyzed. The total experimental uncertainty is obtained as 4.2%. The experimental results proved that the spectral reflectance of the reflector will decrease when the experimental temperature falls from 20 C to -100 C and the decrease degree is different for different wavelength bands.
AB - Off-axis paraboloidal reflector with a large aperture is often used as a collimator in radiometric calibration system in the space environment or a simulator for space carrier. Spectral reflectance measurement of the reflector is an important issue that determines the accuracy of radiometric calibration, especially, for imaging spectrometer. Currently, the reflectance of the reflector is generally measured by the sample contrast method. So, only a small sample of the reflector rather than the whole can be measured. In order to overcome this limitation, a method for in-situ measuring spectral reflectance of off-axis paraboloidal reflector, especially, with a large aperture, is proposed in this paper. First of all, the proposed in-situ measurement approach is designed according to in-situ contrast measurement. Then, the proposed measurement is realized and evaluated in experiment for measuring spectral reflectance of an off-axis paraboloidal reflector with an aperture of 110 mm. Finally, the influence of prodigious temperature fluctuation on the measurement is experimentally investigated and the impact of optical devices and environment on the uncertainty is analyzed. The total experimental uncertainty is obtained as 4.2%. The experimental results proved that the spectral reflectance of the reflector will decrease when the experimental temperature falls from 20 C to -100 C and the decrease degree is different for different wavelength bands.
KW - In-situ measurement
KW - Large aperture
KW - Off-axis paraboloidal reflector
KW - Radiometric calibration
KW - Spectral reflectance
UR - https://www.scopus.com/pages/publications/84884502920
U2 - 10.1016/j.optlaseng.2013.06.004
DO - 10.1016/j.optlaseng.2013.06.004
M3 - 文章
AN - SCOPUS:84884502920
SN - 0143-8166
VL - 52
SP - 224
EP - 229
JO - Optics and Lasers in Engineering
JF - Optics and Lasers in Engineering
IS - 1
ER -