International Geoscience and Remote Sensing Symposium

In 2021 a joint initiative of Belgium and The Netherlands

FR3.O-2.4

IMPROVED SUBAPERTURE BASED APERTURE-DEPENDENT MOTION COMPENSATION BASED ON ADAPTIVE BLOCKING AND APODIZATION

Rifat Afroz, University of Adelaide, Australia; Rolf Scheiber, German Aerospace Center (DLR), Germany; Brian Ng, Derek Abbott, University of Adelaide, Australia

Session:
Noise and Azimuth Ambiguity Suppression Techniques for SAR Data

Track:
Data Analysis Methods (Optical, Multispectral,Hyperspectral, SAR)

Presentation Time:
Fri, 16 Jul, 13:10-13:25 (UTC)
Fri, 16 Jul, 15:10-15:25 Central Europe Summer Time (UTC +2)
Fri, 16 Jul, 21:10-21:25 China Standard Time (UTC +8)
Fri, 16 Jul, 09:10-09:25 Eastern Daylight Time (UTC -4)

Session Co-Chairs:
Davide Castelletti, Capella Space Corporation and Rifat Afroz, The University of Adelaide
Session Manager:
Adrien Grivey
Presentation
Discussion
Resources
Session FR3.O-2
FR3.O-2.1: ANALYSIS AND SUPPRESSION FOR PERIODICITY TRANSMITTED NARROW-BAND INTERFERENCE FOR SAR
Muyang Zhan, Penghui Huang, Shanghai Jiao Tong University, China; Dong Yang, Weiwei Wang, Academy of Space Electronic Information Technology, China; Jialian Sheng, Shanghai Radio Equipment Research Institute,, China; Zhicheng Wang, Xingzhao Liu, Shanghai Jiao Tong University, China
FR3.O-2.2: AZIMUTH AMBIGUITIES SUPPRESSION FOR MULTICHANNEL SAR IMAGING BASED ON L_(2,q) REGULARIZATION: INITIAL RESULTS OF NON-SPARSE SCENARIO
Mingqian Liu, Jie Li, Zhe Zhang, Bingchen Zhang, Yirong Wu, Aerospace Information Reasearch Institute, Chinese Academy of Sciences, China
FR3.O-2.3: LINEAR PROGRAMMING BASED SIDELOBE SUPPRESSION FOR SAR IMAGE OPTIMIZATION
Ruyi Deng, Xiang Tian, University of Electronic Science and Technology of China, China; Zhen-Mei Kang, Southwest China Institute of Electronic Technology, China; Bingqing Hong, University Of Electronic Science And Technology Of China, China; Wen-Q Wang, University of Electronic Science and Technology of China, China
FR3.O-2.4: IMPROVED SUBAPERTURE BASED APERTURE-DEPENDENT MOTION COMPENSATION BASED ON ADAPTIVE BLOCKING AND APODIZATION
Rifat Afroz, University of Adelaide, Australia; Rolf Scheiber, German Aerospace Center (DLR), Germany; Brian Ng, Derek Abbott, University of Adelaide, Australia
FR3.O-2.5: EXPLOITING AERIAL IMAGERY FOR SUPERVISED LEARNING OF SAR DESPECKLING NEURAL NETWORKS
Lloyd Hughes, Shaunak De, Davide Castelletti, Ganesh Yalla, Capella Space Corporation, United States