Target Detection Method for Water Mapping Using Landsat 8 OLI/TIRS Imagery

被引:82
作者
Ji, Luyan [1 ]
Geng, Xiurui [2 ]
Sun, Kang [2 ]
Zhao, Yongchao [2 ]
Gong, Peng [1 ,3 ,4 ]
机构
[1] Tsinghua Univ, Ctr Earth Syst Sci, Key Lab Earth Syst Modelling, Minist Educ, Beijing 100084, Peoples R China
[2] Chinese Acad Sci, Inst Elect, Key Lab Technol Geospatial Informat Proc & Applic, Beijing 100190, Peoples R China
[3] Univ Calif Berkeley, Dept Environm Sci Policy & Management, Berkeley, CA 94720 USA
[4] Joint Ctr Global Change Studies, Beijing 100875, Peoples R China
关键词
ENDMEMBER EXTRACTION; DETECTION ALGORITHMS; MATCHED-FILTER; INDEX NDWI; LAKE; CHINA; CLASSIFICATION; VARIABILITY;
D O I
10.3390/w7020794
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Extracting surface water distribution with satellite imagery has been an important subject in remote sensing. Spectral indices of water only use information from a limited number of bands, thus they may have poor performance from pixels contaminated by ice/snow, clouds, etc. The detection algorithms using information from all spectral bands, such as constrained energy minimization (CEM), could avoid this problem to some extent. However, these are mostly designed for hyperspectral imagery, and may fail when applied to multispectral data. It has been proved that adding linearly irrelevant data to original data could improve the performance of CEM. In this study, two kinds of linearly irrelevant data are added for water extraction: the spectral indices and the spectral similarity metric data. CEM is designed for targets with low-probability distribution in an image, but water bodies do not always satisfy this condition. We thereby impose a sensible coefficient for each pixel to form the weighted autocorrelation matrix. In this study, the weight is based on the orthogonal subspace projection, so this new method is named Orthogonal subspace projection Weighted CEM (OWCEM). The newly launched Landsat 8 images over two lakes, the Hala Lake in China with ice/snow distributed in the north, and the Huron Lake in North America, a lake with a very large surface area, are selected to test the accuracy and robustness of our algorithm. The Kappa coefficient and the receiver operating characteristic (ROC) curve are calculated as an accuracy evaluation standard. For both lakes, our method can greatly suppress the background (including ice/snow and clouds) and extract the complete water surface with a high accuracy (Kappa coefficient > 0.96).
引用
收藏
页码:794 / 817
页数:24
相关论文
共 41 条
[11]   Automated Water Extraction Index: A new technique for surface water mapping using Landsat imagery [J].
Feyisa, Gudina L. ;
Meilby, Henrik ;
Fensholt, Rasmus ;
Proud, Simon R. .
REMOTE SENSING OF ENVIRONMENT, 2014, 140 :23-35
[12]   Clustering to improve matched filter detection of weak gas plumes in hyperspectral thermal imagery [J].
Funk, CC ;
Theiler, J ;
Roberts, DA ;
Borel, CC .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2001, 39 (07) :1410-1420
[13]  
Geng X., 2014, IEEE GEOSCI REMOTE S, P11, DOI [10.1109/LGRS.2013.2288613, DOI 10.1109/LGRS.2013.2288613]
[14]   Principle of small target detection for hyperspectral imagery [J].
Geng XiuRui ;
Zhao YongChao .
SCIENCE IN CHINA SERIES D-EARTH SCIENCES, 2007, 50 (08) :1225-1231
[15]   A Gaussian elimination based fast endmember extraction algorithm for hyperspectral imagery [J].
Geng, Xiurui ;
Xiao, Zhengqing ;
Ji, Luyan ;
Zhao, Yongchao ;
Wang, Fuxiang .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2013, 79 :211-218
[16]   Finer resolution observation and monitoring of global land cover: first mapping results with Landsat TM and ETM+ data [J].
Gong, Peng ;
Wang, Jie ;
Yu, Le ;
Zhao, Yongchao ;
Zhao, Yuanyuan ;
Liang, Lu ;
Niu, Zhenguo ;
Huang, Xiaomeng ;
Fu, Haohuan ;
Liu, Shuang ;
Li, Congcong ;
Li, Xueyan ;
Fu, Wei ;
Liu, Caixia ;
Xu, Yue ;
Wang, Xiaoyi ;
Cheng, Qu ;
Hu, Luanyun ;
Yao, Wenbo ;
Zhang, Han ;
Zhu, Peng ;
Zhao, Ziying ;
Zhang, Haiying ;
Zheng, Yaomin ;
Ji, Luyan ;
Zhang, Yawen ;
Chen, Han ;
Yan, An ;
Guo, Jianhong ;
Yu, Liang ;
Wang, Lei ;
Liu, Xiaojun ;
Shi, Tingting ;
Zhu, Menghua ;
Chen, Yanlei ;
Yang, Guangwen ;
Tang, Ping ;
Xu, Bing ;
Giri, Chandra ;
Clinton, Nicholas ;
Zhu, Zhiliang ;
Chen, Jin ;
Chen, Jun .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 2013, 34 (07) :2607-2654
[17]   Remote sensing of environmental change over China: A review [J].
Gong Peng .
CHINESE SCIENCE BULLETIN, 2012, 57 (22) :2793-2801
[18]  
Harsanyi J.C., 1993, DETECTION CLASSIFICA
[19]   Modelling spatial-temporal change of Poyang Lake using multitemporal Landsat imagery [J].
Hui, Fengming ;
Xu, Bing ;
Huang, Huabing ;
Yu, Qian ;
Gong, Peng .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 2008, 29 (20) :5767-5784
[20]   Analysis of Dynamic Thresholds for the Normalized Difference Water Index [J].
Ji, Lei ;
Zhang, Li ;
Wylie, Bruce .
PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2009, 75 (11) :1307-1317