The study of method in monitoring mineral environment with remote sensing technology

被引:0
|
作者
Wang, PJ [1 ]
Liu, SH [1 ]
Zhu, QJ [1 ]
Guo, XY [1 ]
机构
[1] Beijing Normal Univ, Res Ctr Remote Sensing, Beijing, Peoples R China
来源
IGARSS 2004: IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM PROCEEDINGS, VOLS 1-7: SCIENCE FOR SOCIETY: EXPLORING AND MANAGING A CHANGING PLANET | 2004年
关键词
remote sensing; environment monitor; spectral resample; SAM;
D O I
暂无
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Dexing Copper Mine, locating in the upper river of Dawn River and Le'an River in Jiangxi Province, is the largest copper mineral base in China. The development of the mine results in local environment degradation. This paper presents the method to monitor the local environment based on the remotely sensed images and field spectral data. Choosing remotely sensed images, TM data and ETM data in different time series, as well as field spectral data measured in October, 2002, the field spectral data are resampled in accordance with Gaussian Function. The vegetation spectral change around the mine is described with reflectance curve qualitatively, at the same time water pollution is shown quantificationally with Spectral Angel Mapping (SAM) method. The computed result fits with the ground truth very well.
引用
收藏
页码:582 / 585
页数:4
相关论文
共 50 条
  • [31] Research on Remote Sensing Dynamic Monitoring of Ecological Resource Environment Based on GIS
    Li, Xiaofeng
    He, Zongyi
    Jiang, Lili
    Ye, Yanjun
    WIRELESS PERSONAL COMMUNICATIONS, 2018, 102 (04) : 2941 - 2953
  • [32] Airborne remote sensing as a tool for monitoring landfill sites within an urban environment
    Hedges, PD
    Ellis, RJ
    Elgy, J
    SAMPLING ENVIRONMENTAL MEDIA, 1996, 1282 : 63 - 77
  • [33] Research on Remote Sensing Dynamic Monitoring of Ecological Resource Environment Based on GIS
    Xiaofeng Li
    Zongyi He
    Lili Jiang
    Yanjun Ye
    Wireless Personal Communications, 2018, 102 : 2941 - 2953
  • [34] Urban Ecological Environment Monitoring and Evaluation Based on Remote Sensing Ecological Index
    Cheng Peng-gen
    Tong Cheng-zhuo
    Chen Xiao-yong
    Nie Yun-ju
    INTERNATIONAL CONFERENCE ON INTELLIGENT EARTH OBSERVING AND APPLICATIONS 2015, 2015, 9808
  • [35] Technology of regional and global water monitoring objects according to remote sensing data
    Guk, Aleksandr P.
    Khlebnikova, Elena P.
    Shlyakhova, Maria M.
    25TH INTERNATIONAL SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: ATMOSPHERIC PHYSICS, 2019, 11208
  • [36] Research progress in surface water quality monitoring based on remote sensing technology
    Zheng, Yue
    Wang, Jianjun
    Kondratenko, Yuriy
    Wu, Junhong
    INTERNATIONAL JOURNAL OF REMOTE SENSING, 2024, 45 (07) : 2337 - 2373
  • [37] Applications status and prospects of remote sensing technology in geographic national conditions monitoring
    Xie, Hongquan
    PROCEEDINGS OF THE 2013 THE INTERNATIONAL CONFERENCE ON REMOTE SENSING, ENVIRONMENT AND TRANSPORTATION ENGINEERING (RSETE 2013), 2013, 31 : 228 - 231
  • [38] METHOD OF DROUGHT MONITORING BY REMOTE SENSING BASED ON WATER AREA CHANGING
    Li, Rong
    Li, Xiaotao
    Su, Dongsheng
    Sun, Tao
    2015 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM (IGARSS), 2015, : 2178 - 2181
  • [39] Remote Sensing Monitoring of Volcanic Ash Clouds Based on PCA Method
    Li, Chengfan
    Dai, Yangyang
    Zhao, Junjuan
    Zhou, Shiqiang
    Yin, Jingyuan
    Xue, Dan
    ACTA GEOPHYSICA, 2015, 63 (02) : 432 - 450
  • [40] Study on dynamic snow monitoring by multisensor remote sensing data
    Jiang, XG
    Tang, LL
    Hong, M
    Yu, SF
    THIRD INTERNATIONAL SYMPOSIUM ON MULTISPECTRAL IMAGE PROCESSING AND PATTERN RECOGNITION, PTS 1 AND 2, 2003, 5286 : 481 - 484