TUP2.PJ: Target Detection II |
Session Type: Poster |
Time: Tuesday, July 24, 15:50 - 16:50 |
Location: Poster Area J |
Session Chair: Wenzhi Liao Liao, Ghent University |
TUP2.PJ.1: AN IMPROVED CFAR SCHEME FOR MAN-MADE TARGET DETECTION IN HIGH RESOLUTION SAR IMAGES |
Weike Li; Harbin Institute of Technology |
Bin Zou; Harbin Institute of Technology |
Yu Xin; Institute of Beijing Remote Sensing Information |
Lamei Zhang; Harbin Institute of Technology |
Zhilu Wu; Harbin Institute of Technology |
TUP2.PJ.2: MOVING TARGET DETECTION AND IMAGING FOR GEOSYNCHRONOUS SAR |
Haoyu Tian; University of Electronic Science and Technology of China |
Jianshu Cao; University of Electronic Science and Technology of China |
Shunsheng Zhang; University of Electronic Science and Technology of China |
Wen-Qin Wang; University of Electronic Science and Technology of China |
Huihui Ding; University of Electronic Science and Technology of China |
TUP2.PJ.3: A SALIENCY-BASED METHOD FOR SAR TARGET DETECTION |
Haixiang Li; University of Electronic Science and Technology of China |
Xuelian Yu; University of Electronic Science and Technology of China |
Xuegang Wang; University of Electronic Science and Technology of China |
TUP2.PJ.4: A TARGET RECAPTURING METHOD FOR THE MILLIMETER WAVE SEEKER WITH NARROW BEAMWIDTH |
Fugang Lu; Xi'an Modern Control Technology Research Institute |
Shichao Chen; Xi'an Modern Control Technology Research Institute |
Ming Liu; Shaanxi Normal University |
Jun Wang; Xi'an Modern Control Technology Research Institute |
Fei Ma; Xi'an Modern Control Technology Research Institute |
Taoli Yang; University of Electronic Science and Technology of China |
TUP2.PJ.5: LOCALIZATION DECEPTION APPROACH USING FREQUENCY DIVERSE ARRAY AGAINST BI-SATELLITE POSITIONING RECONNAISSANCE |
Haoliang Guan; University of Electronic Science and Technology of China |
Shunsheng Zhang; University of Electronic Science and Technology of China |
Wen-Qin Wang; University of Electronic Science and Technology of China |
Hui Wang; University of Electronic Science and Technology of China |
TUP2.PJ.6: AN IMPROVED METHOD FOR VEHICLE EXTRACTION FROM HIGH-RESOLUTION SATELLITE IMAGES |
Zhumei Liu; Institute of Engineering Mechanics, China Earthquake Administration |
Jingfa Zhang; Institute of Crustal Dynamics, China Earthquake Administration |
Shengle Li; Institute of Seismology, China Earthquake Administration |
TUP2.PJ.7: MANIFOLD REGULARIZED LOW-RANK REPRESENTATION FOR HYPERSPECTRAL ANOMALY DETECTION |
Tongkai Cheng; Fudan University |
Bin Wang; Fudan University |
TUP2.PJ.8: HYPERSPECTRAL TARGET DETECTION USING SEMI- AND NON- PARAMETRIC METHODS |
Assaf Dvora; Ben-Gurion University of the Negev |
Stefania Matteoli; National Research Council of Italy (CNR) |
Stanley Rotman; Ben-Gurion University of the Negev |
Gil Tidhar; Ben-Gurion University of the Negev |
Marco Diani; Italian Naval Academy |
Mayer Aladjem; Ben-Gurion University of the Negev |
TUP2.PJ.9: A DISTRIBUTED AND PARALLEL ANOMALY DETECTION IN HYPERSPECTRAL IMAGES BASED ON LOW-RANK AND SPARSE REPRESENTATION |
Jun Liu; Nanjing University of Science and Technology |
Weixuan Zhang; Jinling High School |
Zebin Wu; Nanjing University of Science and Technology |
Yi Zhang; Nanjing University of Science and Technology |
Yang Xu; Nanjing University of Science and Technology |
Ling Qian; Nanjing University of Science and Technology |
Zhihui Wei; Nanjing University of Science and Technology |
TUP2.PJ.10: TARGET DETECTION IN REMOTE SENSING IMAGE BASED ON SALIENCY COMPUTATION OF SPIKING NEURAL NETWORK |
Yang Liu; Henan University |
Kun Cai; Henan University |
Miao-hui Zhang; Henan University |
Feng-Bin Zheng; Henan University |