Permanent Snow and Ice Extraction Based on Object-oriented Classification in Himalaya
He B(何兵); Kong B(孔博)
2016-11
会议名称23rd International Conference on Geoinformatics, Geoinformatics 2015
会议日期June 19, 2015 - June 21, 2015
会议地点Wuhan, China
关键词Optimal Segmentation Scale Mount Everest Landsat TM Normalized Difference Vegetation Index
页码7-10
通讯作者孔博
英文摘要

As the highest mountain chain in the world, the Himalaya's snow and ice are melting gradually. How to extract the border and area of permanent snow and ice in Himalaya becomes a very important problem for global climate change research. In order to explore methods to extract permanent snow and ice in unreachable area, this paper takes the multi-source remote sensing data as the basic of multi-scale segmentation, and utilizes the decision tree to probe object-oriented permanent snow and ice extraction. This paper adopts the vector distance method and optimal segmentation scale calculation model to solve the problem of segmentation scale selection. It takes horizontal and vertical distance between the boundary of image objects area after segmentation and the actual boundary of classification targets as the precision difference index, and estimates the effectiveness of segmentation results in order to determine the optimal segmentation scale. Compared with the land-use visual interpretation data of Institute of Mountain Hazards and Environment, the accuracy of extraction results can reach 92.5%. It shows that the proposed methods are feasible, and the results are also credible and accurate.

收录类别EI
会议主办者China Association for Geographic Information Service ; Chinese Society for Surveying, Mapping and Geoinformation
会议录Proceedings - 23rd International Conference on Geoinformatics 2015, Geoinformatics 2015
语种英语
内容类型会议论文
源URL[http://ir.imde.ac.cn/handle/131551/18102]  
专题成都山地灾害与环境研究所_数字山地与遥感应用中心
作者单位Digital Mountain and Remote Sensing Application Center, Institute of Mountain Hazards and Environment, CAS, Chengdu, China
推荐引用方式
GB/T 7714
He B,Kong B. Permanent Snow and Ice Extraction Based on Object-oriented Classification in Himalaya[C]. 见:23rd International Conference on Geoinformatics, Geoinformatics 2015. Wuhan, China. June 19, 2015 - June 21, 2015.
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