Optics and Precision Engineering, Volume. 30, Issue 22, 2847(2022)
Analysis of the atmospheric multi-angle polarimetric radiometer for aerial remote sensing and its test experiments
[1] D M WINKER, W H HUNT, C A HOSTETLER. Status and performance of the CALIOP lidar, 5575, 8-15(2004).
[2] M FILONCHYK. Characteristics of the severe March 2021 Gobi Desert dust storm and its impact on air pollution in China. Chemosphere, 287, 132219(2022).
[3] B CHEN, Z H SONG, F PAN et al. Obtaining vertical distribution of PM2.5 from CALIOP data and machine learning algorithms. Science of the Total Environment, 805, 150338(2022).
[4] F BRAKHASI, M HAJEB, T MIELONEN et al. Investigating aerosol vertical distribution using CALIPSO time series over the Middle East and North Africa (MENA), Europe, and India: a BFAST-based gradual and abrupt change detection. Remote Sensing of Environment, 264, 112619(2021).
[5] A LEVIS, A B DAVIS, J R LOVERIDGE et al. 3D cloud tomography and droplet size retrieval from multi-angle polarimetric imaging of scattered sunlight from above, 1183305(2021).
[6] A EL-HABASHI, J BOWLES, R FOSTER et al. Polarized observations for advanced atmosphere-ocean algorithms using airborne multi-spectral hyper-angular polarimetric imager. Journal of Quantitative Spectroscopy and Radiative Transfer, 262, 107515(2021).
[7] O DUBOVIK, Z Q LI, M I MISHCHENKO et al. Polarimetric remote sensing of atmospheric aerosols: Instruments, methodologies, results, and perspectives. Journal of Quantitative Spectroscopy and Radiative Transfer, 224, 474-511(2019).
[8] F WAQUET, J F LÉON, B CAIRNS et al. Analysis of the spectral and angular response of the vegetated surface polarization for the purpose of aerosol remote sensing over land. Applied Optics, 48, 1228-1236(2009).
[9] P A SALYUK, I E STEPOCHKIN, K A SHMIRKO et al. Use of polarization multi-angular measurements of the parasol satellite radiometer for detection of Asian dust storms over the marine surface, 11560, 7L(2020).
[10] F X ZHENG, Z Q LI, W Z HOU et al. Aerosol retrieval study from multiangle polarimetric satellite data based on optimal estimation method. Journal of Applied Remote Sensing, 14(2020).
[11] B CAIRNS, E E RUSSELL, J D LAVEIGNE et al. Research scanning polarimeter and airborne usage for remote sensing of aerosols. Polarization Science and Remote Sensing, 5158, 33-44(2003).
[12] R J PERALTA, C NARDELL, B CAIRNS et al. Aerosol polarimetry sensor for the glory mission, 20076786(6786).
[13] J M SMIT, J H H RIETJENS, A D NOIA et al. In-flight validation of SPEX airborne spectro-polarimeter onboard NASA's research aircraft ER-2, 2018(11180).
[14] [14] 14王涵. 陆地上空气溶胶的航空多角度偏振反演研究[D].北京:中国科学院大学, 2014. doi: 10.1117/12.2177561WANGH. Study on the Retrieval of Aerosol Over Land Surface from Airborne Directional Polarized Measurements[D]. Beijing:University of Chinese Academy of Sciences, 2014. (in Chinese). doi: 10.1117/12.2177561
[15] O P HASEKAMP, J LANDGRAF. Retrieval of aerosol properties over the ocean from multispectral single-viewing-angle measurements of intensity and polarization: retrieval approach, information content, and sensitivity study. Journal of Geophysical Research Atmospheres, 110, D20207(2005).
[16] C FRANKENBERG, O HASEKAMP, C O'DELL et al. Aerosol information content analysis of multi-angle high spectral resolution measurements and its benefit for high accuracy greenhouse gas retrievals. Atmospheric Measurement Techniques, 5, 1809-1821(2012).
[17] D MARTYNENKO, T HOLZER-POPP, H ELBERN et al. Understanding the aerosol information content in multi-spectral reflectance measurements using a synergetic retrieval algorithm. Atmospheric Measurement Techniques, 3, 1589-1598(2010).
[18] X G XU, J WANG. Retrieval of aerosol microphysical properties from AERONET photopolarimetric measurements: 1. Information content analysis. Journal of Geophysical Research: Atmospheres, 120, 7059-7078(2015).
[19] F X ZHENG, W Z HOU, Z Q LI et al. Optimal estimation retrieval for directional polarimetric camera onboard Chinese Gaofen-5 satellite: an analysis on multi-angle dependence and a posteriori error. Acta Physica Sinica, 68(2019).
[20] W Z HOU, Z Q LI, J WANG et al. Improving remote sensing of aerosol microphysical properties by near-infrared polarimetric measurements over vegetated land: information content analysis. Journal of Geophysical Research: Atmospheres, 123, 2215-2243(2018).
[21] [21] 21宋茂新, 孙斌, 孙晓兵, 等. 航空多角度偏振辐射计的偏振定标[J]. 光学 精密工程, 2012, 20(6): 1153-1158. doi: 10.3788/ope.20122006.1153SONGM X, SUNB, SUNX B, et al. Polarization calibration of airborne Muti-angle polarimetric radiometer[J]. Opt. Precision Eng., 2012, 20(6): 1153-1158.(in Chinese). doi: 10.3788/ope.20122006.1153
[22] K H LEE, Y J KIM. Satellite remote sensing of Asian aerosols: a case study of clean, polluted, and Asian dust storm days. Atmospheric Measurement Techniques, 3, 1771-1784(2010).
[23] H WANG, X B SUN, B SUN et al. Retrieval of aerosol optical properties over a vegetation surface using multi-angular, multi-spectral, and polarized data. Advances in Atmospheric Sciences, 31, 879-887(2014).
[24] H WANG, L K YANG, A J DENG et al. Remote sensing of aerosol optical depth using an airborne polarimeter over North China. Remote Sensing, 9(2017).
[25] L L QIE, Z Q LI, X B SUN et al. Improving remote sensing of aerosol optical depth over land by polarimetric measurements at 1640 nm: airborne test in North China. Remote Sensing, 7, 6240-6256(2015).
[26] H WANG, X B SUN, L K YANG et al. Aerosol retrieval algorithm based on adaptive land-atmospheric decoupling for polarized remote sensing over land surfaces. Journal of Quantitative Spectroscopy and Radiative Transfer, 219, 74-84(2018).
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Xiaobing SUN, Maoxin SONG, Yang WU, Aiwen ZHANG, Rufang TI. Analysis of the atmospheric multi-angle polarimetric radiometer for aerial remote sensing and its test experiments[J]. Optics and Precision Engineering, 2022, 30(22): 2847
Category: Modern Applied Optics
Received: Mar. 29, 2022
Accepted: --
Published Online: Nov. 28, 2022
The Author Email: SUN Xiaobing (xbsun@aiofm.ac.cn)