DocumentCode
2321253
Title
Analysis the effect of the spectral resolution character of HJY20-1-A on Urban green land application
Author
Zhang, Wenjuan ; Zhang, Bing ; Zhang, Wei
Author_Institution
Center for Earth Obs. & Digital Earth, Chinese Acad. of Sci., Beijing
fYear
2009
fDate
20-22 May 2009
Firstpage
1
Lastpage
5
Abstract
Urban green land is the one important aspect to indicate the Urban Modernization level. Urban stressed green land spectral features could be described by selected band ratios with image spectrometer, and these ratios including: NDVI, CARI, MTVI2, and so on. The imaging Fourier transform spectrometer (IFTS) HJY20-1-A onboard China small satellite ldquoHJ-1Ardquo will reflect urban green land distribution efficiently under large scale. As a new and challenging type of imaging spectrometer, comparing to grating image spectrometer, the spectral resolution in wavelength of recovered spectra by IFTS is special, so the impact of the resolution characteristic of HJY20-1-A on urban green land application should be considered. This paper analyzes the spectral resolution of HJY20-1-A firstly, and then the impact of the resolution characteristic on urban green land application was researched based on simulated data under different resolution. Finally, the relation between HJY20-1-A and the traditional grating image spectrometer was built up for equivalent calculation, and the formula between the typical vegetation indices of HJY20-1-A and Hyperion was built.
Keywords
Fourier transform spectrometers; ecology; vegetation; vegetation mapping; CARI; China small satellite; HJ-1A; HJY20-1-A; Hyperion; MTVI2; NDVI; grating image spectrometer; imaging Fourier transform spectrometer; spectral resolution character; urban green land distribution; urban modernization level; urban stressed green land spectral features; vegetation index; Calibration; Fourier transforms; Geoscience; Gratings; Hyperspectral imaging; Hyperspectral sensors; Image resolution; Large-scale systems; Remote sensing; Spectroscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Urban Remote Sensing Event, 2009 Joint
Conference_Location
Shanghai
Print_ISBN
978-1-4244-3460-2
Electronic_ISBN
978-1-4244-3461-9
Type
conf
DOI
10.1109/URS.2009.5137632
Filename
5137632
Link To Document