近期论文
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1. Sun D., Li Z., Wang S.*, et al. 2022. Two-decadal estimation of sixteen phytoplankton pigments from satellite observations in coastal waters. International Journal of Applied Earth Observation and Geoinformation, 108, 102715, doi: 10.1016/j.jag.2022.102715 (SCI, TOP期刊, 1区)
2. Huan Y., Sun D.*, Wang S., et al. 2022. Phytoplankton Size Classes in the Global Ocean at Different Bathymetric Depths. IEEE Transactions on Geoscience and Remote Sensing, 4206411. doi: 10.1109/TGRS.2022.3153477. (SCI, TOP期刊, 1区)
3. Huan Y., Sun D.*, Wang S., et al. 2022. Phytoplankton Package Effect in Oceanic Waters: Influence of Chlorophyll a and Cell Size. Science of the Total Environment, 838(1). 10.1016/j.scitotenv.2022.155876. (SCI, TOP期刊, 1区)
4. Sun D., T. Pan, S. Wang*, et al. 2021. Linking phytoplankton absorption to community composition in Chinese marginal seas. Progress in Oceanography, doi: 10.1016/j.pocean.2021.102517. (SCI, TOP期刊, 1区)
5. Sun D., Y. Chen, S. Wang*, et al. 2021. Using Landsat 8 OLI data to differentiate Sargassum and Ulva prolifera blooms in the South Yellow Sea. International Journal of Applied Earth Observations and Geoinformation, doi: 10.1016/j.jag.2021.102302. (SCI, TOP期刊, 1区)
6. Huan, Y., Sun D.*, S. Wang, et al. 2021. Phytoplankton "Missing" absorption in marine waters: a novel pigment compensation model for the packaging effect. Journal of Geophysical Research: Oceans, 126, doi: 10.1029/2020JC016458 (SCI, TOP期刊, 2区)
7. Huan, Y., Sun D.*, S. Wang, et al. 2021. Remote sensing estimation of phytoplankton absorption associated with size classes in coastal waters. Ecological Indicators, 121, doi: 10.1016/j.ecolind.2020.107198. (SCI, 2区)
8. Wang, S., J. Lv, J. Nie, Sun, D.*, et al. 2021. Dynamics of euphotic zone depth in the Bohai Sea and Yellow Sea. Science of the Total Environment, 751, 142270, doi: /10.1016/j.scitotenv.2020.142270. (SCI, TOP期刊, 1区)
9. Ling, Z., Sun, D.*, S. Wang, et al. 2020. Remote sensing estimation of colored dissolved organic matter (CDOM) from GOCI measurements in the Bohai Sea and Yellow Sea. Environmental Science and Pollution Research, 27, 6872-6885. (SCI, 3区)
10. Sun, D., Y. Huan, S. Wang et al. 2019. Remote sensing of spatial and temporal patterns of phytoplankton assemblages in the Bohai Sea, Yellow Sea, and East China Sea. Water Research, 157, 119-133. (SCI, TOP期刊, 1区)
11. Sun, D., W. Lai, S. Wang*, et al. 2019. Synoptic relationships to estimate phytoplankton communities specific to sizes and species from satellite observations in coastal waters. Optics Express, 27(16), 1156-1172. (SCI, 2区)
12. Sun, D.*, X. Su, S. Wang, Z. Qiu, Z. Ling, Z. Mao, and Y. He. 2019. Variability of particulate backscattering ratio and its relations to particle intrinsic features in the Bohai Sea, Yellow Sea, and East China Sea. Optics Express, 27(3), 3074-3090. (SCI, 2区)
13. Sun, D.*, X. Su, Z. Qiu, et al. 2019. Remote sensing estimation of sea surface salinity from GOCI measurements in the Southern Yellow Sea. Remote Sensing, 11, 775, doi:10.3390/rs11070775. (SCIE, 2区)
14. Ling, Z., Sun, D.*, S. Wang, Z. Qiu, Y. Huan, Z. Mao, and Y. He. 2018. Retrievals of phytoplankton community structures from in situ fluorescence measurements by HS-6P. Optics Express, 26(23), 30556-30575. (SCI, 2区)
15. Sun, D., S. Chen*, Z. Qiu*, S. Wang, et al. 2017. Second-order variability of inherent optical properties of particles in Bohai Sea and Yellow Sea: driving factor analysis and modeling. Limnology and Oceanography, 62(3), 1266-1287. (SCI, TOP期刊, 1区)
16. Sun, D.*, Y. Huan, Z. Qiu*, C. Hu, S. Wang, and Y. He. 2017. Remote sensing estimation of phytoplankton size classes from GOCI satellite measurements in Bohai Sea and Yellow Sea. Journal of Geophysical Research-Oceans, doi:10.1002/2017JC013099. (SCI, TOP期刊, 2区)
17. Sun, D., Z. Qiu*, C. Hu, S. Wang, et al. 2016. A hybrid method to estimate suspended particle sizes from satellite measurements over Bohai Sea and Yellow Sea. Journal of Geophysical Research-Oceans, 121, 6742-6761, doi:10.1002/2016JC011949. (SCI, TOP期刊, 2区)
18. Sun Deyong*, Hu Chuanmin, Qiu Zhongfeng, and Wang Shengqiang. Reconstruction of hyperspectral reflectance for optically complex turbid inland lakes: test of a new scheme and implications for inversion algorithms. Optics Express, 2015, 23(11), 718-740. (SCI, TOP期刊, 2区)
19. Sun Deyong*, Hu Chuanmin, Qiu Zhongfeng, et al. Estimating phycocyanin pigment concentration in productive inland waters using Landsat measurements: A case study in Lake Dianchi. Optics Express, 2015, 23(3), 3055-3074. (SCI, TOP期刊, 2区)
20. Sun Deyong*, Hu Chuanmin, Qiu Zhongfeng, et al. Influence of a red band-based water classification approach on chlorophyll algorithms for optically complex estuaries. Remote Sensing of Environment, 2014, 155, 289-302. (SCI, TOP期刊, 1区)
21. Sun Deyong*, Qiu Zhongfeng, Li Yunmei, et al. Detection of Total Phosphorus Concentrations of Turbid Inland Waters Using a Remote Sensing Method. Water, Air, & Soil Pollution, 2014, 225(5), 1-17. (SCI, 3区)
22. Sun Deyong*, Zhongfeng Qiu, Yunmei Li, et al. New strategy to improve estimation of diffuse attenuation coefficient for highly turbid inland waters. International Journal of Remote Sensing, 2014, 35(9), 3350-3371. (SCI, 3区)
23. Sun Deyong*, Li Yunmei, Le Chengfeng, et al. A semi-analytical approach for detecting suspended particulate composition in complex turbid inland waters (China). Remote Sensing of Environment, 2013, 134, 92-99. (SCI, TOP期刊, 1区)
24. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Hyperspectral remote sensing of the Pigment C-Phycocyanin in turbid inland waters, based on optical classification. IEEE Transactions on Geoscience and remote sensing, 2013, 51(7), 3871-3884. (SCI, TOP期刊, 2区)
25. Liu Jia, Sun Deyong*, Zhang Yunlin, et al. Pre-classification improves relationships between water clarity, light attenuation, and suspended particulates in turbid inland waters. Hydrobiologia, 2013, 711(1), 71-86. (SCI, 3区)
26. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Specific inherent optical quantities of complex turbid inland waters, from the perspective of water classification. Photochemical & Photobiological Sciences, 2012, 11, 1299-1312. (SCI, 3区)
27. Sun Deyong*, Li Yunmei, Wang Qiao, et al. A novel support vector regression model to estimate the phycocyanin concentration in turbid inland waters from hyperspectral reflectance. Hydrobiologia, 2012, 680, 199-217. (SCI, 3区)
28. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Development of optical criteria to discriminate various types of highly turbid lake waters. Hydrobiologia, 2011, 669, 83-104. (SCI, 3区)
29. Sun Deyong*, Li Yunmei, Wang Qiao, et al. A neural network model to retrieve CDOM absorption from in situ measured hyperspectral data in an optically complex lake: Lake Taihu case study. International Journal of Remote Sensing, 2011, 32(14), 4005-4022. (SCI, 3区)
30. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Partitioning particulate scattering and absorption into contributions of phytoplankton and non-algal particles in winter in Lake Taihu (China). Hydrobiologia, 2010, 644(1), 337-349. (SCI, 3区)
31. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Detection of suspended matter concentrations in optically complex Lake Taihu, China comparison of DSFs- and SVM-based models. IEEE Geoscience and Remote Sensing Letters, 2010, 7(4), 816-820. (SCI, 3区)
32. Wang Qiao, Sun Deyong*, Li Yunmei, et al. Mechanisms of remote-sensing reflectance variability and its relation to bio-optical processes in a highly turbid eutrophic lake: lake Taihu (China). IEEE Transactions on Geoscience and remote sensing, 2010, 48(1), 575-584. (SCI, TOP期刊, 2区)
33. Sun Deyong*, Li Yunmei, and Wang Qiao. A unified model for remotely estimating chlorophyll a in Lake Taihu, China based on SVM and in situ hyperspectral data. IEEE Transactions on Geoscience and remote sensing, 2009, 47(8), 2957-2968. (SCI, TOP期刊, 2区)
34. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Light scattering properties and their relation to the biogeochemical composition of turbid productive waters: A case study of Lake Taihu. Applied Optics, 2009, 48(11), 1979-1989. (SCI, 3区)
35. Sun Deyong*, Li Yunmei, Wang Qiao, et al. Parameterization of Water Component Absorption in Inland Eutrophic Lake and Its Seasonal Variability: A Case Study in Lake Taihu. International Journal of Remote Sensing, 2009, 30(13), 3549-3571. (SCI, 3区)