Volume 7 Issue 6
Nov.  2014
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GAO Ming-hui, ZHENG Yu-quan. Validation method of single-channel optical system design of CO2 detector[J]. Chinese Optics, 2014, 7(6): 949-955. doi: 10.3788/CO.20140706.0949
Citation: GAO Ming-hui, ZHENG Yu-quan. Validation method of single-channel optical system design of CO2 detector[J]. Chinese Optics, 2014, 7(6): 949-955. doi: 10.3788/CO.20140706.0949

Validation method of single-channel optical system design of CO2 detector

doi: 10.3788/CO.20140706.0949
  • Received Date: 21 Sep 2014
  • Rev Recd Date: 24 Nov 2014
  • Publish Date: 25 Nov 2014
  • The single-channel demonstration is adopted to validate the rationality and feasibility of CO2 detector optical system. Atmosphere spectrum is tested by experiment with the mode of sun light and diffuser. The spectrum calibration of the single-channel demonstration is carried out in lab. The matching calculation of two spectral position obtained from above two ways is carried on by using spectral matching algorithm. The result shows that the absorption peak point deviation is less than 0.006 nm in the line depth stable position, which could meet accuracy requirement of algorithm. This way can not only verify the validity of the matching algorithm, but also the rationality and feasibility of optical system design. The research provides the theoretical and practical optical reference data for spectrometer design in the future.

     

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  • [1] 郑玉权.温 室气体遥感探测仪器发展现状[J]. 中国光学,2011,4(6):546-561. ZHENG Y Q. Development status of remote sensing instruments for greenhouse gases[J]. Chinese Optics,2011,4(6):546-561.(in Chinese)
    [2] POLLOCK R,HARING R E,HOLDEN J R. The orbiting carbon observatory instrument: performance of the OCO instrument and plans for the OCO-2 instrument. sensors, systems and next-generation satellites XIV[J]. SPIE,2010,7826:7.
    [3] BROBERG S E,PAGANO T S,AUMANN H HAtmospheric sounding at JPL:current and future technologies[J]. SPIE,2003,5074:600-611.
    [4] MILLER C R. Status of the Atmospheric Infrared Sounder(AIRS)[J]. SPIE,1996,2961:73-90.
    [5] MORSE P,BATES J AND MILLER C. Development and Test of the Atmospheric Infrared Sounder(AIRS)[J]. SPIE,1999,3759:236-253.
    [6] HENRI G C,CARINA O,ANNE E Z,et al. SCIAMACHY the completion of a new-generation instrument for studying the atmosphere[J]. SPIE,2011,2957:20-30.
    [7] 赵敏杰,司福祺,江宇,等. 星载大气痕量气体差分吸收光谱仪的实验室定标[J]. 光学精密工程,2013, 21(3): 567-574. ZHAO M J,SI F Q,JIANG Y,et al.. In-lab calibration of space-borne differential optical absorption spectrometer In-lab calibration[J]. Opt. Precision Eng.,2013,21(3):567-574.(in Chinese)
    [8] 郑玉权,高志良. CO2探测仪光学系统设计[J]. 光学精密工程,2012,20(12):2645-2653. ZHENG Y Q,GAO ZH L. Optical system design of CO2 sounder[J]. Opt. Precision Eng.,2012,20(12):2645-2653.(in Chinese)
    [9] 周海金,刘文清,司福祺,等. 星载大气痕量气体差分吸收光谱仪杂散光抑制[J]. 光学精密工程,2012, 20(11):2331-2337. ZHOU H J,LIU W Q,SI F Q,et al.. Stray light suppression of space-borne differential optical absorption spectrometer for monitoring atmospheric trace gas[J]. Opt. Precision Eng.,2012,20(11):2331-2337.(in Chinese)
    [10] 姚波,袁立银,亓洪兴,等. 双通道成像光谱仪共用离轴三反射光学系统的设计[J]. 红外技术,2013,35(7):419-424. YAO B,YUAN L Y,QI H X,et al.. Optical design of a dual-channel imaging spectrometer sharing the off-axis TMA system[J]. Infrared Technology,2013,35(7):419-424.(in Chinese)
    [11] 李胜,张玉钧,高闽光,等. 一种傅立叶变换红外光谱仪动镜扫描系统的设计[J]. 红外技术,2013,34(1):48-52. LI SH,ZHANG Y J,GAO M G,et al.. Design of the moving mirror scanning system for a FT-IR spectrometer[J]. Infrared Technology,2013,34(1):48-52.(in Chinese)
    [12] NOEL S,BOVENSMANN H,BURROWS J P,et al.. The SCIAMACHY instrument on ENVISAT-1[J]. SPIE,1998,3498:94-104.
    [13] 王龙,蔺超,郑玉权. CO2探测仪星上定标铝漫反射板的制备与试验[J]. 中国光学,2013,6(4):591-599. WANG L,LIN CH,ZHENG Y Q. Fabrication and experiment of aluminum diffuser for CO2 detector calibration on orbit[J]. Chinese Optics,2013,6(4):591-599.(in Chinese)
    [14] 金辉,姜会林,郑玉权,等. 高光谱遥感器的光谱定标[J]. 发光学报,2013,34(2):235-239. JIN H,JIANG H L,ZHENG Y Q,et al.. Spectral calibration of the hyperspectral optical remote sensor[J]. Chinese J. Luminescence,2013,34(2):235-239.(in Chinese)
    [15] AUMANN H H,CHAHINE M T,CAUTIER C,et al.. AIRS/AMSU/HSB on the Aqua mission:design, science objectives, data products, and processing systems[J]. IEEE,2003,41(2):253-264.
    [16] ZOUTMAN E, OLIJ C. Calibration approach for sciamachy[J]. SPIE,1997,3117:306-316.
    [17] WERIJ H, OLIJ C, ZOUTMAN A E,et al.. SCIAMACHY the completion of a new-generation instrument for studying the atmosphere[J]. SPIE,1997,2957:20-30.
    [18] 刘倩倩,郑玉权. 超高分辨率光谱定标技术发展概况[J]. 中国光学,2012,5(6):566-577. LIU Q Q,ZHENG Y Q. Development of spectral calibration technologies with ultra-high resolutions[J]. Chinese Optics,2012,5(6):566-577.(in Chinese)
    [19] 李欢,周峰. 星载超光谱成像技术发展与展望[J]. 光学与光电技术,2012,10(5):38-44. LI H,ZHOU F.Development of spaceborne hyperspectral imaging technique[J]. Optics Optoelectronic Technology,2012,10(5):38-44.(in Chinese)

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