OPTICS & OPTOELECTRONIC TECHNOLOGY, Volume. 21, Issue 3, 37(2023)

ThermalDriftEffectofOnboardLong-WaveInfraredWind Interferometer

RENQing-hua1, YANGZhen-xin1, WANGHou-mao2, LIJuan3, WUKui-jun1,4, and HEWei-wei1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    References(9)

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    [9] [9] HE W W, Wu K H, Feng Y T, et al. The Near-Space Wind and Temperature Sensing Interferometer:Forward ModelandMeasurementSimulation[J]. RemoteSensing, 2019, 11(8):914.

    [10] [10] Wu YJ J, Harding B J, Triplett C C, et al. Errors from asymmetric emission rate in spaceborne, limb sounding Doppler interferometry:Acorrection algorithm with application to ICON/MIGHTI[J]. Earth and Space Science, 2020, 7(10).

    [11] [11] Shepherd G G, McDade I C, Gault W A, et al. The Stratospheric Wind Interferometer For Transport studies(SWIFT)[J]. AdvancesinSpaceResearch, 2001, 27(6/7):1071-1079.

    [14] [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] [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] [16] RahnamaP, GaultW, McdadeI, et al. DesignrequirementsfortheSWIFTinstrument[J]. MeasurementScience &Technology, 2012, 24(1):015801.

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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

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    Paper Information

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    Received: Aug. 30, 2022

    Accepted: --

    Published Online: Dec. 28, 2023

    The Author Email:

    DOI:

    CSTR:32186.14.

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