• Acta Optica Sinica
  • Vol. 38, Issue 4, 0412001 (2018)
Limei Yin1、*, Bing Qiao1, Junchi Liu1, Zhiguo Huang2, Zhenduo Zhang1, and Hongzhuang Li1
Author Affiliations
  • 1 Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, Jilin 130033, China
  • 2 University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.3788/AOS201838.0412001 Cite this Article Set citation alerts
    Limei Yin, Bing Qiao, Junchi Liu, Zhiguo Huang, Zhenduo Zhang, Hongzhuang Li. Combined Radiation Calibration Method for Ground-Based Infrared Radiation Measurement System[J]. Acta Optica Sinica, 2018, 38(4): 0412001 Copy Citation Text show less
    Optical structure of infrared radiation measurement system
    Fig. 1. Optical structure of infrared radiation measurement system
    (a) Original image; (b) stellar image after two-point correction
    Fig. 2. (a) Original image; (b) stellar image after two-point correction
    Residual bounds of data fitting. (a) July 25, 2017; (b) August 30, 2017
    Fig. 3. Residual bounds of data fitting. (a) July 25, 2017; (b) August 30, 2017
    Fitting result of calibration curve. (a) July 25, 2017; (b) August 30, 2017
    Fig. 4. Fitting result of calibration curve. (a) July 25, 2017; (b) August 30, 2017
    Elevation /(°)Uncorrected result /10-2Two-point correction of blackbody /10-3Two-point correction /10-4Segmented single point calibration /10-4
    203.903.26--
    253.893.292.158.01
    303.893.363.715.87
    353.883.383.864.32
    403.883.423.823.69
    453.883.473.962.91
    503.883.474.072.75
    553.873.484.252.26
    603.873.484.171.99
    653.873.504.252.03
    703.873.514.162.12
    753.873.524.181.93
    803.863.504.241.68
    863.863.454.611.84
    Table 1. Comparison of nonuniformity correction results
    NumberStarElevation /(°)Positionα' /(1012 m2·W-1)ΔDIrradiance /(10-11 W·m-2)Relative error 1 /%MODTRAN transmittanceRelative error 2 /%
    1HD371229.00(139,168)8.448299.875.2710.170.342312.76
    2HD1292920.82(143,168)8.4604142.787.115.600.286210.36
    3HD1888417.50(143,169)8.4142397.9319.220.180.256227.98
    4HD1905839.85(144,165)8.4706605.9625.18.710.39263.36
    5HD2502513.10(142,171)8.4185159.129.6010.370.208325.83
    6HD2913942.37(143,165)8.44091351.1557.15.820.40167.08
    7HD3206861.38(143,163)8.446691.083.821.770.447616.05
    8HD4447863.12(141,163)8.4388588.2424.005.020.450414.16
    9HD4891527.97(132,171)8.4061277.1913.201.820.33631.12
    10HD5287717.57(136,171)8.4285101.206.7920.350.25758.58
    11HD8179732.75(131,167)8.4046217.5812.4019.290.362223.27
    12HD8948450.30(125,162)8.4191172.827.411.990.424913.21
    13HD8975861.92(126,159)8.4209220.398.3215.170.44856.63
    14HD9568955.00(129,161)8.4084176.547.561.250.435815.17
    15HD9683354.65(127,160)8.427954.682.6712.870.435025.64
    Table 2. Inversion error of star irradiance in July 25, 2017
    NumberStarElevation /(°)Positionα' /(1012 m2·W-1)ΔDIrradiance /(10-11 W·m-2)Relative error 1 /%MODTRAN transmittanceRelative error 2 /%
    1HD371223.60(175,200)8.2745161.625.274.370.31281.49
    2HD2913935.91(179,193)8.29971925.7057.141.970.379811.04
    3HD3139849.41(179,186)8.3794271.118.019.630.424420.84
    4HD3900362.05(167,44)8.304039.971.040.700.448714.56
    5HD4447858.09(177,181)8.3810904.0123.981.080.443215.56
    6HD4891523.87(168,201)8.2512414.4413.217.590.31460.59
    7HD6926754.44(169,183)8.3794132.253.561.660.436115.43
    8HD8049375.33(161,170)8.4569273.196.960.490.464616.90
    9HD8975867.94(161,173)8.4173341.438.326.170.457811.45
    10HD9043223.40(164,201)8.284679.962.9010.250.30629.60
    11HD9568959.86(165,178)8.4109311.667.568.480.44648.60
    12HD10002954.48(167,182)8.3880165.284.717.780.436220.22
    13HD10222454.56(163,182)8.396266.201.731.110.434812.98
    14HD13187339.97(166,190)8.3715461.5012.827.240.39304.51
    Table 3. Inversion error of star irradiance in August 30, 2017
    Limei Yin, Bing Qiao, Junchi Liu, Zhiguo Huang, Zhenduo Zhang, Hongzhuang Li. Combined Radiation Calibration Method for Ground-Based Infrared Radiation Measurement System[J]. Acta Optica Sinica, 2018, 38(4): 0412001
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