Acta Optica Sinica, Volume. 43, Issue 18, 1899902(2023)

Comparison and Analysis of Payloads Performance for Active and Passive Spaceborne Atmospheric Detection

Jingsong Wang1,3 and Dong Liu1,2、*
Author Affiliations
  • 1Key Laboratory of Atmospheric Optics, Anhui Institute of Optics and Fine Mechanics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, Anhui, China
  • 2Advanced Laser Technology Laboratory of Anhui Province, Hefei 230037, Anhui, China
  • 3Science Island Branch of Graduate School, University of Science and Technology of China, Hefei 230026, Anhui, China
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    References(43)

    [1] Liu W Q. Opportunities and challenges for development of atmospheric environmental optics monitoring technique under“double carbon”goal[J]. Acta Optica Sinica, 42, 0600001(2022).

    [3] Wu D W, Jing J, Li H L. Analysis of influence of near space environment on navigation system of hypersonic vehicle[J]. Aerospace Technology, 73-80(2012).

    [7] Wang X H, Yang B L. Application status and future development trend of spaceborne microwave scatterometer abroad[J]. Aerospace China, 26-29(2006).

    [11] Tian X M, Liu D, Xu J W et al. Review on atmospheric detection lidar network and spaceborne lidar technology[J]. Journal of Atmospheric and Environmental Optics, 13, 401-416(2018).

    [12] Tian X M, Liu D, Xu J W et al. Review of lidar technology for atmosphere monitoring[J]. Journal of Atmospheric and Environmental Optics, 13, 321-341(2018).

    [41] Wang S H, Han Z G, Yao Z G et al. Analysis on cloud vertical structure over China and its neighborhood based on CloudSat data[J]. Plateau Meteorology, 30, 38-52(2011).

    [42] Zhang H, Peng J, Jing X W et al. Vertical overlapping characteristics of clouds in East Asia and its influence on cloud radiation forcing[J]. Scientia Sinica: Terrae, 43, 523-535(2013).

    [43] Yang B Y, Zhang H, Peng J et al. Analysis on global distribution characteristics of cloud microphysical and optical properties based on the CloudSat data[J]. Plateau Meteorology, 33, 1105-1118(2014).

    [44] Li J M, Huang J P, Yi Y H et al. Using spaceborne lidar data to study the statistical characteristics of cloud vertical distribution in East Asia[J]. Chinese Journal of Atmospheric Sciences, 33, 698-707(2009).

    [46] Zheng J Y, Liu D, Wang Z E et al. Global distribution and seasonal variation of clouds observed from CloudSat/CALIPSO[J]. Acta Meteorologica Sinica, 76, 420-433(2018).

    [50] Sun Y C. Study on global aerosol optical characteristics based on spaceborne lidar[D](2014).

    [51] Zhang X Y, Wu D, Yang Z W et al. Research on inversion model of sea surface wind speed from spaceborne lidar data[J]. Acta Optica Sinica, 42, 1828007(2022).

    [52] Han Y L. Retrieval of sea surface wind speed from SAR and CALIPSO data[D](2010).

    [53] Zhang X X. Research on improving the detection accuracy of sea surface wind speed by spaceborne lidar[D](2012).

    [59] Song J J. The first spaceborne global atmospheric wind lidar was successfully launched[J]. Space International, 40-43(2018).

    [60] Chen B L, Yang Z D, Min M et al. Application requirements and research progress of spaceborne Doppler wind lidar[J]. Laser & Optoelectronics Progress, 57, 190003(2020).

    [67] Chen W B, Liu J Q, Hou X et al. Lidar technology for atmosphere environment monitoring satellite[J]. Aerospace Shanghai (Chinese & English), 40, 13-20, 110(2023).

    [68] Liu D, Chen S J, Liu Q et al. Spaceborne environmental detection lidar and its key techniques[J]. Acta Optica Sinica, 42, 1701001(2022).

    [70] He T, Guo A Y, Huang J et al. Overview of terrestrial ecosystem carbon monitoring satellite“ju Mang”[J]. Space International, 8-12(2022).

    [71] Sun L, Yang J K, Wang Y Z et al. Design and implementation of active and passive integrated multi-beam lidar[J]. Spacecraft Recovery & Remote Sensing, 43, 27-35(2022).

    [72] Tang T J, Yang J K, Fu R M et al. Optical system design of multi-beam lidar for terrestrial ecosystem carbon monitoring satellite[J]. Spacecraft Recovery & Remote Sensing, 43, 36-49(2022).

    [89] Zhang P, Yang J, Guan M et al. WMO space plan and the international development trend of Fengyun meteorological satellite[J]. Advances in Meteorological Science and Technology, 12, 56-63, 79(2022).

    [90] Shang H Z, Husi L T, Li M et al. Remote sensing of cloud properties based on visible-to-infrared channel observation from passive remote sensing satellites[J]. Acta Optica Sinica, 42, 0600003(2022).

    [91] Zhang M, Xu N, Zheng Z J et al. Algorithm and accuracy test of FY-3D MERSI-Ⅱ genting product[J]. Journal of Tropical Meteorology, 38, 779-786(2022).

    [92] Zhang Z Q, Lu F, Fang X et al. Application and development of FY-4 meteorological satellite[J]. Aerospace Shanghai, 34, 8-19(2017).

    [94] Yuan J H, Zhou Y B, Liu Y B et al. Effect of cloud droplet spectrum distribution on retrievals of water cloud optical thickness and effective particle radius by AGRI onboard FY-4A satellite[J]. Acta Optica Sinica, 42, 0628004(2022).

    [95] Chen L F, Shang H Z, Fan M et al. Mission overview of the GF-5 satellite for atmospheric parameter monitoring[J]. National Remote Sensing Bulletin, 25, 1917-1931(2021).

    [97] Chang Y Y, Sun B, Huang C et al. Cloud detection and parameter inversion using multi-directional polarimetric observations[J]. Acta Optica Sinica, 40, 1101002(2020).

    [105] Ding N, Yu B, Yan C X et al. Spaceborne aerosol passive optical remote sensing instrument: progress and future prospect[J]. Acta Optica Sinica, 42, 1701002(2022).

    [106] Zhang J Q, Xue C, Gao Z L et al. Optical remote sensor for cloud and aerosol from space: past, present and future[J]. Chinese Optics, 8, 679-698(2015).

    [111] Gao L, Zhang L Y, Li J et al. Retrieval of atmospheric aerosol optical depth over land from AVHRR[J]. Journal of Applied Meteorological Science, 25, 42-51(2014).

    [113] Mao J T, Li C C, Zhang J H et al. The comparison of remote sensing aerosol optical depth from modis data and ground Sun-photometer observations[J]. Quarterly Journal of Applied Meteorlolgy, 13, 127-135(2002).

    [115] Su Y Y, Liu H B, Yang A L et al. Evaluation and comparative analysis for the MODIS C6.1 aerosol optical depth products in different climate regions over China[J]. Acta Scientiae Circumstantiae, 43, 11-26(2023).

    [120] Zhang Y T, Chen B, Zhang T H et al. Analysis of the spatiotemporal variations of aerosols during APEC using MODIS and MISR data[J]. Journal of Atmospheric and Environmental Optics, 12, 136-147(2017).

    [122] Li Z Q, Xie Y S, Shi Y S et al. A review of collaborative remote sensing observation of greenhouse gases and aerosol with atmospheric environment satellites[J]. National Remote Sensing Bulletin, 26, 795-816(2022).

    [123] Ti R F, Fan Y Z, Huang H L et al. Comparative analysis of BPDF land surface models based on DPC measurements of Gaofen-5 satellite and data of AERONET sites[J]. Acta Optica Sinica, 42, 146-154(2022).

    [125] Yang X Y, Wang Z T, Pan G et al. Progress in atmospheric observation technology of greenhouse gases by satellite remote sensing[J]. Journal of Atmospheric and Environmental Optics, 17, 581-597(2022).

    [126] Liu Y, Wang J, Che K et al. Satellite remote sensing of greenhouse gases: progress and trends[J]. National Remote Sensing Bulletin, 25, 53-64(2021).

    [136] Xiong W. Greenhouse gases Monitoring Instrument(GMI) on GF-5 satellite (invited)[J]. Infrared and Laser Engineering, 48, 24-30(2019).

    [137] Li Q Q, Wang X H, Ye H H et al. Atmospheric CO2 inversion error analysis and accuracy verification[J]. Acta Optica Sinica, 40, 0601003(2020).

    [138] Feng Y T, Fu D, Zhao Z L et al. An overview of spaceborne atmospheric wind field measurement with passive optical remote sensing[J]. Acta Optica Sinica, 43, 0601011(2023).

    [141] Han W H, Wang Y M, Lü J G et al. Auto-processing of middle and upper atmosphere wind FPI interference fringe pattern[J]. Science Technology and Engineering, 10, 2420-2423(2010).

    [148] Yu T T. Research on key steps of interferogram preprocessing for Doppler asymmetric spatial heterodyne interferometer[D](2020).

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    Jingsong Wang, Dong Liu. Comparison and Analysis of Payloads Performance for Active and Passive Spaceborne Atmospheric Detection[J]. Acta Optica Sinica, 2023, 43(18): 1899902

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    Paper Information

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    Received: Jun. 19, 2023

    Accepted: Aug. 11, 2023

    Published Online: Sep. 14, 2023

    The Author Email: Liu Dong (dliu@aiofm.cas.cn)

    DOI:10.3788/AOS231153

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