TY - JOUR
T1 - Research on SAR data integrated processing methodology oriented on earth environment factor inversions
AU - Guo, Huadong
AU - Chen, Jie
AU - Li, Xinwu
AU - Zhang, Lu
AU - Wu, Wenjin
AU - Liu, Huiying
AU - Wang, Kai
AU - Li, Zhuo
AU - Gu, Xinwei
AU - Hu, Qingrong
AU - Wang, Xinmin
AU - Li, Jun
AU - Han, Chunming
AU - Zhu, Junjie
AU - Shen, Guozhuang
AU - Liu, Guang
AU - Fu, Wenxue
AU - Sun, Zhongchang
AU - Wen, Xiaoyang
N1 - Publisher Copyright:
© 2017 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2017/7/3
Y1 - 2017/7/3
N2 - As an important advanced technique in the field of Earth observations, Synthetic Aperture Radar (SAR) plays a key role in the study of global environmental change, resources exploration, disaster mitigation, urban environments, and even lunar exploration. However, studies on imaging, image processing, and Earth factor inversions have often been conducted independently for a long time, which significantly limits the application effectiveness of SAR remote sensing due to the lack of an overall integrated design scheme and integrated information processing. Focusing on this SAR application issue, this paper proposes and describes a new SAR data processing methodology–SAR data integrated processing (DIP) oriented on Earth environment factor inversions. The simple definition, typical integrated modes and overall implementation ideas are introduced. Finally, focusing on building information extraction (man-made targets) and sea ice classification (natural targets) applications, three SAR DIP methods and experiments are conducted. Improved results are obtained under the guidance of the SAR DIP framework. Therefore, the SAR DIP theoretical framework and methodology represent a new SAR science application mode that has the capability to improve the SAR remote sensing quantitative application level and promote the development of new theories and methodologies.
AB - As an important advanced technique in the field of Earth observations, Synthetic Aperture Radar (SAR) plays a key role in the study of global environmental change, resources exploration, disaster mitigation, urban environments, and even lunar exploration. However, studies on imaging, image processing, and Earth factor inversions have often been conducted independently for a long time, which significantly limits the application effectiveness of SAR remote sensing due to the lack of an overall integrated design scheme and integrated information processing. Focusing on this SAR application issue, this paper proposes and describes a new SAR data processing methodology–SAR data integrated processing (DIP) oriented on Earth environment factor inversions. The simple definition, typical integrated modes and overall implementation ideas are introduced. Finally, focusing on building information extraction (man-made targets) and sea ice classification (natural targets) applications, three SAR DIP methods and experiments are conducted. Improved results are obtained under the guidance of the SAR DIP framework. Therefore, the SAR DIP theoretical framework and methodology represent a new SAR science application mode that has the capability to improve the SAR remote sensing quantitative application level and promote the development of new theories and methodologies.
KW - SAR data integrated processing
KW - building detection
KW - mode and theoretical framework
KW - sea ice classification
UR - https://www.scopus.com/pages/publications/85009250279
U2 - 10.1080/17538947.2016.1275831
DO - 10.1080/17538947.2016.1275831
M3 - 文章
AN - SCOPUS:85009250279
SN - 1753-8947
VL - 10
SP - 657
EP - 674
JO - International Journal of Digital Earth
JF - International Journal of Digital Earth
IS - 7
ER -