DocumentCode
2904325
Title
Fuzziness and Multi-neighborhood Strategy for Ridgeline Extraction DEMs Based
Author
Mingliang, Luo ; Bin, Zhang ; Guoan, Tang ; Youfu, Dong
Author_Institution
Land & Resource Coll., China West Normal Univ., Nanchong, China
Volume
3
fYear
2009
fDate
4-5 July 2009
Firstpage
679
Lastpage
682
Abstract
Landform feature lines, as one kind of descriptors of landform skeletons, have been used in many fields, such as surveying, hydrology simulation, landform classification, and vegetation mapping. Due to the fuzziness and multi-scale characteristics of landform features, there are still some obstacles in the process of landform features exaction. The main weakness includes spatial extent, the vagueness of boundaries of landform feature lines. In this study, some efforts have been made to choose a relatively objective spatial extent in the ridgelines extraction. A multi-neighborhood method combined with fuzziness was used in the ridgelines extraction based on DEMs. The process included the following steps, choice of spatial scale, extraction watershed divides, determination degree of membership and extraction ridgelines according to given degree of membership. The result shows that this novel method can depict landform features in fine detail and the choice of spatial extent is more objective and reasonable.
Keywords
digital elevation models; edge detection; feature extraction; fuzzy logic; geophysical signal processing; image processing; DEM based ridgeline extraction; boundary vagueness; fuzziness strategy; landform feature exaction; landform feature fuzziness; landform feature lines; landform feature multiscale characteristics; landform skeleton descriptor; membership degree determination; multi neighborhood strategy; spatial extent; watershed divide extraction; Civil engineering; Corrosion; Data mining; Educational institutions; Educational technology; Geometry; Hydrology; Skeleton; Surface morphology; Vegetation mapping; DEMs; degree of membership; fuzziness; multi-neighborhood; ridgelines extraction;
fLanguage
English
Publisher
ieee
Conference_Titel
Environmental Science and Information Application Technology, 2009. ESIAT 2009. International Conference on
Conference_Location
Wuhan
Print_ISBN
978-0-7695-3682-8
Type
conf
DOI
10.1109/ESIAT.2009.413
Filename
5199785
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