Citation: | HAO Guanghua, SU Jie. A study on the dynamic tie points ASI algorithm in the Arctic Ocean[J]. Acta Oceanologica Sinica, 2015, 34(11): 126-135. doi: 10.1007/s13131-015-0659-y |
Bi Haibo, Huang Haijun, Su Qiao, et al. 2014. An Arctic sea ice thickness variability revealed from satellite altimetric measurements. Acta Oceanologica Sinica, 33(11): 134-140
|
Cavalieri D J, Gloersen P, Campbell W J. 1984. Determination of seaice parameters with the Nimbus 7 SMMR. Journal of Geophysical Research, 89(D4): 5355-5369
|
Cavalieri D J, St Germain K M. 1995. Arctic sea ice research with satel-lite passive microwave radiometers. IEEE Geoscience and Re-mote Sensing Society Newsletter, 97(1): 6-12
|
Cavalieri D J, Markus T, Hall D K, et al. 2006. Assessment of EOS-AQUAAMSR-EArctic sea ice concentrations using landsat-7 and airborne microwave imagery. IEEE Transactions on Geoscience and Remote Sensing, 44(11): 3057-3069
|
Cavalieri D J, Markus T, Hall D K, et al. 2010. Assessment of AMSR-E Antarctic winter sea-ice concentrations using Aqua MODIS. IEEE Transactions on Geoscience and Remote Sensing, 48(9): 3331-3339
|
Comiso J C. 1995. SSM/I sea ice concentrations using the bootstrap algorithm. National Aeronautics and Space Administration. NASA RefPubl, RP 1380, 49
|
Comiso J C, Kwok R. 1996. Surface and radiative characteristics of the summer Arctic sea ice cover from multisensor satellite observa-tions. Journal of Geophysical Research, 101(C12): 28397-28416
|
Comiso J C, Cavalieri D J, Markus T. 2003. Sea ice concentration, ice temperature, and snow depth using AMSR-E data. IEEE Trans-actions on Geoscience and Remote Sensing, 41(2): 243-252
|
de Vernal A, Gersonde R, Goosse H, et al. 2013. Sea ice in the paleo-climate system: the challenge of reconstructing sea ice from proxies—an introduction. Quaternary Science Reviews, 79: 1-8
|
Eastwood S, Larsen K R, Lavergne T, et al. 2011. Global Sea Ice Con-centration Reprocessing Product User Manual, Version 1.3, EU-METSAT
|
Emery W J, Fowler C, Maslanik J. 1994. Arctic sea ice concentrations from special sensor microwave imager and advanced very high resolution radiometer satellite data. Journal of Geophysical Re-search, 99(C9): 18329-18342
|
Gloersen P, Cavalieri D J. 1986. Reduction of weather effects in the calculation of sea ice concentration from microwave radiances. Journal of Geophysical Research, 91(C3): 3913-3919
|
Han H, Lee H. 2007. Compartive study of sea ice concentration by us-ing DMSP SSM/I, Aqua AMSR-E and Kompsat-1 EOC. In: IEEE InternationalGeoscience and Remote Sensing Symposium, 2007. IGARSS 2007. Barcelona, Spain: IEEE, 4249-4252
|
Kaleschke L, Lüpkes C, Vihma T, et al. 2001. SSM/I sea ice remote sensing for mesoscale ocean-atmosphere interaction analysis: Ice and icebergs. Canadian Journal of Remote Sensing, 27(5): 526-537
|
Kern S. 2001. A new algorithm to retrieve the sea ice concentration using weather-corrected 85GHz SSM/I measurements. Logos-Verlag, Institute of Environmental Physics, Bremen, Germany
|
Kern S, Heygster G. 2001. Sea-ice concentration retrieval in the Ant-arctic based on the SSM/I 85. 5 GHz polarization. Annals of Glaciology, 33(1): 109-114
|
KernS, Kaleschke L, Clausi D A. 2003. A comparison of two 85-GHz SSM/I ice concentration algorithms with AVHRR and ERS-2 SAR imagery. IEEE Transactions on Geoscience and Remote Sensing, 41(10): 2294-2306
|
Kern S. 2004. A new method for medium-resolution sea ice analysis using weather-influence corrected Special Sensor Microwave/Imager 85 GHz data. International Journal of Re-mote Sensing, 25(21): 4555-4582
|
Liang Shunlin, Strahler A, Walthall C. 1998. Retrieval of land surface Albedo from satellite observations: A simulation study. In:IEEE International Geoscience and Remote Sensing Symposium Proceedings. Seattle, WA: IEEE, 1286-1288
|
Liu Jiping, Curry J A, Martinson D G. 2004. Interpretation of recent Antarctic sea ice variability. Geophysical Research Letters, 31(2)
|
Markus T, Cavalieri D J. 2000. An enhancement of the NASA Team sea ice algorithm. IEEE Transactions on Geoscience and Re-mote Sensing, 38(3): 1387-1398
|
Meier W N. 2005. Comparison of passive microwave ice concentra-tion algorithm retrievals with AVHRR imagery in Arctic peri-pheral seas. IEEE Transactions on Geoscience and Remote Sensing, 43(6): 1324-1337
|
Rind D, Healy R, ParkinsonC, et al. 1995. The role of seaice in 2×CO2 climate model sensitivity. Part I: The total influence of sea ice thickness and extent. Journal of Climate, 8(3): 449-463
|
Serreze M C, Maslanik J A, Scambos T A, et al. 2003. A record minim-um arctic sea ice extent and area in 2002. Geophysical Re-search Letters, 30(3): 1110
|
Spreen G. 2004. Meereisfernerkundung Mit Dem Satellitengestützten Mikrowellenradiometer AMSR (-E)—Bestimmung der Eiskonzentration und Eiskante unter Verwendung-der-89-GHz-Kan.le, Diplomarbeit [dissertation] (in German). Ham-burg, Germany: Universityof Hamburg
|
Spreen G, Kaleschke L, Heygster G. 2008. Sea ice remote sensing us-ing AMSR-E 89-GHz channels. Journal of Geophysical Re-search, 113(C2)
|
Steffen K, Schweiger A. 1991. NASA team algorithm for sea ice con-centration retrieval from Defense Meteorological Satellite Pro-gram special sensor microwave imager: Comparison with Landsat satellite imagery. Journal of Geophysical Research, 96(C12): 21971-21987
|
Svendsen E, Matzler C, Grenfell T C. 1987. A model for retrieving total sea ice concentration from a spaceborne dual-polarized pass-ive microwave instrument operating near 90 GHz. Internation-al Journal of Remote Sensing, 8(10): 1479-1487
|
Su Jie, Hao Guanghua, Ye Xinxin, et al. 2013. The experiment and val-idation of sea ice concentration AMSR-E retrieval algorithm in polar region. Journal of Remote Sensing (in Chinese), 173(3): 495-513
|
Vavrus S, Harrison S P.2003. The impact of sea-ice dynamics on the Arctic climate system. Climate Dynamics, 20(7-8): 741-757
|
Wiebe H, Heygster G, Markus T.2009. Comparison of the ASI ice con-centration algorithm with Landsat-7 ETM+ and SAR imagery. IEEE Transactions on Geoscience and Remote Sensing, 47(9): 3008-3015
|
Ye Xinxin, Su Jie, Wang Yang, et al. 2011.Assessment of AMSR-E sea ice concentration in ice margin zone using MODIS data. In: 2011 International Conference onRemote Sensing, Environ-ment and Transportation Engineering (RSETE). Nanjing, China: IEEE, 3869-3873
|
Zhang S G. 2012. Sea ice concentration algorithm and study on the physical process about sea ice and melt-pond change in cent-ral Arctic [dissertation]. Qingdao, China: Ocean University of China
|
Zhang Shugang, Zhao Jinping, Frey K, et al. 2013. Dual-polarized ra-tio algorithm for retrieving Arctic sea ice concentration from passive microwave brightness temperature. Journal of Oceano-graphy, 69(2): 215-227
|
1. | Kexin Song, Peter J. Minnett. Evaluation of Summertime Passive Microwave and Reanalysis Sea‐Ice Concentration in the Central Arctic. Earth and Space Science, 2024, 11(1) doi:10.1029/2023EA003214 | |
2. | Xingdong Wang, Zhi Guo, Haowei Zhang, et al. Snowmelt detection on the Antarctic ice sheet and ice Shelves based on AMSR2 89 GHz channels. Ecological Indicators, 2023, 153: 110403. doi:10.1016/j.ecolind.2023.110403 | |
3. | Ying Chen, Xi Zhao, Xiaoping Pang, et al. Daily sea ice concentration product based on brightness temperature data of FY-3D MWRI in the Arctic. Big Earth Data, 2022, 6(2): 164. doi:10.1080/20964471.2020.1865623 | |
4. | Hairui Hao, Jie Su, Qian Shi, et al. Arctic sea ice concentration retrieval using the DT-ASI algorithm based on FY-3B/MWRI data. Acta Oceanologica Sinica, 2021, 40(11): 176. doi:10.1007/s13131-021-1839-6 | |
5. | Shuang Liang, Jiangyuan Zeng, Zhen Li, et al. Consistent Comparison of Remotely Sensed Sea Ice Concentration Products with ERA-Interim Reanalysis Data in Polar Regions. Remote Sensing, 2020, 12(18): 2880. doi:10.3390/rs12182880 | |
6. | Qian Shi, Jie Su, Georg Heygster, et al. Step-by-Step Validation of Antarctic ASI AMSR-E Sea-Ice Concentrations by MODIS and an Aerial Image. IEEE Transactions on Geoscience and Remote Sensing, 2020. doi:10.1109/TGRS.2020.2989037 | |
7. | Guanghua Hao, Jie Su, Timo Vihma, et al. Trends, abrupt shifts and interannual variability of the Arctic Wintertime Seasonal Sea Ice from 1979 to 2019. Annals of Glaciology, 2020, 61(83): 441. doi:10.1017/aog.2020.68 | |
8. | P. Ola G. Persson, Byron Blomquist, Peter Guest, et al. Shipboard Observations of the Meteorology and Near‐Surface Environment During Autumn Freezeup in the Beaufort/Chukchi Seas. Journal of Geophysical Research: Oceans, 2018, 123(7): 4930. doi:10.1029/2018JC013786 | |
9. | Jie Su, Hairui Hao, Hongjie Liang. Retrieval of Arctic Sea Ice Surface Melt Onset In 2016 From FY-3B/MWRI Data. IGARSS 2020 - 2020 IEEE International Geoscience and Remote Sensing Symposium, doi:10.1109/IGARSS39084.2020.9324599 | |
10. | Lele Li, Haihua Chen, Xiaoyu Wang, et al. Study on the Retrieval of Sea Ice Concentration from Fy3b/Mwri in the Arctic. IGARSS 2019 - 2019 IEEE International Geoscience and Remote Sensing Symposium, doi:10.1109/IGARSS.2019.8900152 | |
11. | Qian Shi, Jie Su. Retrieval and Validation of Sea Ice Concentration from AMSR-E/AMSR2 in Polar Regions. IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium, doi:10.1109/IGARSS.2018.8518127 |