• OPTICS & OPTOELECTRONIC TECHNOLOGY
  • Vol. 21, Issue 3, 37 (2023)
RENQing-hua1, YANGZhen-xin1, WANGHou-mao2, LIJuan3..., WUKui-jun1,4 and HEWei-wei1|Show fewer author(s)
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    RENQing-hua, YANGZhen-xin, WANGHou-mao, LIJuan, WUKui-jun, HEWei-wei. ThermalDriftEffectofOnboardLong-WaveInfraredWind Interferometer[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2023, 21(3): 37 Copy Citation Text show less
    References

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    [8] ShepherdGG, ThuillierG, ChoYM, et al. TheWindImagingInterferometer(Windii)ontheUpperAtmosphere ResearchSatellite:A20YearPerspective[J]. ReviewsofGeophysics, 2012, 50(2):RG2007.

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    [14] RahnamaP, RochonYJ, McdadeIC, et al. SatellitemeasurementofstratosphericwindsandozoneusingDoppler Michelson interferometry. Part I:Instrument model and measurement simulation[J]. Journal of Atmospheric & OceanicTechnology, 2005, 23(23):753-769.

    [15] Rahnama P, Gault W, Mcdade I, et al. Onboard calibration and monitoring for the SWIFT instrument[J]. MeasurementScience&Technology, 2012, 23(10):105801.

    [16] RahnamaP, GaultW, McdadeI, et al. DesignrequirementsfortheSWIFTinstrument[J]. MeasurementScience &Technology, 2012, 24(1):015801.

    RENQing-hua, YANGZhen-xin, WANGHou-mao, LIJuan, WUKui-jun, HEWei-wei. ThermalDriftEffectofOnboardLong-WaveInfraredWind Interferometer[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2023, 21(3): 37
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