Mapping the extent of giant Antarctic icebergs with Deep Learning
暂无分享,去创建一个
[1] S. Cornford,et al. Episodic dynamic change linked to damage on the Thwaites Glacier Ice Tongue , 2023, Nature Geoscience.
[2] A. Shepherd,et al. Tracking changes in the area, thickness, and volume of the Thwaites tabular iceberg “B30” using satellite altimetry and imagery , 2021, The Cryosphere.
[3] Xiao Xiang Zhu,et al. A survey of uncertainty in deep neural networks , 2021, Artificial Intelligence Review.
[4] Alberto M. Mestas-Nuñez,et al. Semi-automated tracking of iceberg B43 using Sentinel-1 SAR images via Google Earth Engine , 2021, The Cryosphere.
[5] B. Scheuchl,et al. Automatic delineation of glacier grounding lines in differential interferometric synthetic-aperture radar data using deep learning , 2021, Scientific Reports.
[6] Chris Russell,et al. Seasonal Arctic sea ice forecasting with probabilistic deep learning , 2021, Nature Communications.
[7] H. Hellmer,et al. Automated iceberg tracking with a machine learning approach applied to SAR imagery: A Weddell sea case study , 2021 .
[8] Claudia Kuenzer,et al. A Novel Method for Automated Supraglacial Lake Mapping in Antarctica Using Sentinel-1 SAR Imagery and Deep Learning , 2021, Remote. Sens..
[9] I. Eisenman,et al. Modeling the breakup of tabular icebergs , 2020, Science advances.
[10] Celia A. Baumhoer,et al. Automated Extraction of Antarctic Glacier and Ice Shelf Fronts from Sentinel-1 Imagery Using Deep Learning , 2019, Remote. Sens..
[11] Christine Wesche,et al. An adaptive machine learning approach to improve automatic iceberg detection from SAR images , 2019, ISPRS Journal of Photogrammetry and Remote Sensing.
[12] Christine Wesche,et al. Three Years of Near‐Coastal Antarctic Iceberg Distribution From a Machine Learning Approach Applied to SAR Imagery , 2019, Journal of Geophysical Research: Oceans.
[13] Vinayaraj Poliyapram,et al. Deep Learning Model for Water/Ice/Land Classification Using Large-Scale Medium Resolution Satellite Images , 2019, IGARSS 2019 - 2019 IEEE International Geoscience and Remote Sensing Symposium.
[14] Lingcao Huang,et al. Automatically delineating the calving front of Jakobshavn Isbræ from multitemporal TerraSAR-X images: a deep learning approach , 2019, The Cryosphere.
[15] Abhineet Singh,et al. River Ice Segmentation With Deep Learning , 2019, IEEE Transactions on Geoscience and Remote Sensing.
[16] Michael Wood,et al. Detection of Glacier Calving Margins with Convolutional Neural Networks: A Case Study , 2018, Remote. Sens..
[17] Jean Tournadre,et al. Melting and fragmentation laws from the evolution of two large Southern Ocean icebergs estimated from satellite data , 2018, The Cryosphere.
[18] R. Kerr,et al. Iceberg drift and ocean circulation in the northwestern Weddell Sea, Antarctica , 2018 .
[19] David G. Long,et al. A Comprehensive Database for Antarctic Iceberg Tracking Using Scatterometer Data , 2018, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[20] Donald D. Blankenship,et al. Antarctic Mapping Tools for Matlab , 2017, Comput. Geosci..
[21] Adam Krężel,et al. An object-based SAR image iceberg detection algorithm applied to the Amundsen Sea , 2017 .
[22] François Chollet,et al. Xception: Deep Learning with Depthwise Separable Convolutions , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[23] Gaël Durand,et al. Antarctic icebergs melt over the Southern Ocean: Climatology and impact on sea ice , 2016 .
[24] Susanne Lehner,et al. Automated Iceberg Detection Using High-Resolution X-Band SAR Images , 2016 .
[25] D. Wilton,et al. Enhanced Southern Ocean marine productivity due to fertilization by giant icebergs , 2016 .
[26] Jian Sun,et al. Deep Residual Learning for Image Recognition , 2015, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[27] Thomas Brox,et al. U-Net: Convolutional Networks for Biomedical Image Segmentation , 2015, MICCAI.
[28] Christine Wesche,et al. Near-coastal circum-Antarctic iceberg size distributions determined from Synthetic Aperture Radar images , 2015 .
[29] Jimmy Ba,et al. Adam: A Method for Stochastic Optimization , 2014, ICLR.
[30] Jürgen Schmidhuber,et al. Deep learning in neural networks: An overview , 2014, Neural Networks.
[31] Kamal Sarabandi,et al. Microwave Radar and Radiometric Remote Sensing , 2013 .
[32] David G. Long,et al. Islands of Ice: Influence of Free-Drifting Antarctic Icebergs on Pelagic Marine Ecosystems , 2012 .
[33] Malcolm Davidson,et al. GMES Sentinel-1 mission , 2012 .
[34] M. Vernet,et al. Cooling, dilution and mixing of ocean water by free-drifting icebergs in the Weddell Sea , 2011 .
[35] Wolfgang Rack,et al. Basal melting of A-38B: A physical model constrained by satellite observations , 2007 .
[36] Kenneth L. Smith,et al. Free-Drifting Icebergs: Hot Spots of Chemical and Biological Enrichment in the Weddell Sea , 2007, Science.
[37] Tiago H. Silva,et al. Contribution of giant icebergs to the Southern Ocean freshwater flux , 2006 .
[38] Tiago H. Silva,et al. Computer-based identification and tracking of Antarctic icebergs in SAR images , 2005 .
[39] Desmond Power,et al. Iceberg Detection Capabilities of RADARSAT Synthetic Aperture Radar , 2001 .
[40] R. Gill,et al. Operational Detection of Sea Ice Edges and Icebergs Using SAR , 2001 .
[41] A. Jenkins. The impact of melting ice on ocean waters , 1999 .
[42] David P. Stevens,et al. Modelling the dynamics and thermodynamics of icebergs , 1997 .
[43] W. Rees,et al. Iceberg detection using ERS-1 Synthetic Aperture Radar , 1996 .
[44] W. G. Rees,et al. Segmentation of synthetic-aperture Radar imagery of sea ice , 1994 .
[45] Andrzej S. Kucik,et al. AI4SeaIce: Toward Solving Ambiguous SAR Textures in Convolutional Neural Networks for Automatic Sea Ice Concentration Charting , 2022, IEEE Transactions on Geoscience and Remote Sensing.
[46] Guigang Zhang,et al. Deep Learning , 2016, Int. J. Semantic Comput..
[47] J. Tournadre,et al. Antarctic icebergs distributions 1992 – 2014 , 2016 .
[48] Nitish Srivastava,et al. Dropout: a simple way to prevent neural networks from overfitting , 2014, J. Mach. Learn. Res..
[49] Christine Wesche,et al. Iceberg signatures and detection in SAR images in two test regions of the Weddell Sea, Antarctica , 2012 .
[50] S. Sandven,et al. ICEBERG OBSERVATIONS IN THE BARENTS SEA BY RADAR AND OPTICAL SATELLITE IMAGES , 2007 .
[51] W. G. Rees,et al. A technique for the identification and analysis of icebergs in synthetic aperture radar images of Antarctica , 1999 .
[52] D. Turner,et al. Near-coastal iceberg distributions in East Antarctica, 50-145° E , 1998, Annals of Glaciology.
[53] Mark R. Drinkwater,et al. Satellite Microwave Radar Observations of Antarctic Sea Ice. Chapter 8 , 1998 .
[54] N. Young,et al. Applications of time series of microwave backscatter over the Antarctic region , 1997 .
[55] N. Otsu. A threshold selection method from gray level histograms , 1979 .
[56] J. MacQueen. Some methods for classification and analysis of multivariate observations , 1967 .