DocumentCode
1622310
Title
A new approach for terrain analysis of lunar surface by Chandrayaan-1 data using open source libraries
Author
Acharya, Hardik ; Amitabh ; Srinivasan, T.P. ; GopalaKrishna, B.
Author_Institution
Survey of India, IISM, Hyderabad, India
fYear
2013
Firstpage
1
Lastpage
4
Abstract
Chandrayaan-1, India´s first moon mission was launched by ISRO in October 2008. SAC (Space Applications centre) is responsible for development of software for processing data from HySI (Hyper Spectral Imager) and TMC (Terrain Mapping Camera). The present work discusses the technique and methodology for generating terrain parameters i.e. slope, aspect, relief-shade, contour etc. using Digital Elevation Model (DEM) generated from Chandrayaan-1 TMC datasets. In this paper, an algorithm and corresponding desktop application software has been developed and implemented. Preliminary testing of application using Chandrayaan-1 DEM data indicate promising results. Environment creation for execution of the code using open source technology is the challenging task, as it includes the building of open source libraries with visual studio. This paper describes the Slope, Aspect, Relief-Shade, Painted slope, Painted aspect and Painted DEM generation method and discusses the results achieved for the good evaluation of terrain.
Keywords
astronomical image processing; hyperspectral imaging; lunar surface; public domain software; terrain mapping; Chandrayaan-1 data; desktop application software; hyperspectral imager; lunar surface; moon mission; open source libraries; painted DEM generation method; painted aspect; painted slope; space applications centre; terrain analysis; terrain mapping camera; Computational modeling; Graphical user interfaces; Indexes; Libraries; Solids; Testing; Chandrayaan-1; DEM; GDAL; Qt; TMC;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision, Pattern Recognition, Image Processing and Graphics (NCVPRIPG), 2013 Fourth National Conference on
Conference_Location
Jodhpur
Print_ISBN
978-1-4799-1586-6
Type
conf
DOI
10.1109/NCVPRIPG.2013.6776166
Filename
6776166
Link To Document