Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations

Normalized difference vegetation index and land surface temperature data, in a sample plot each from east, center and west of Nepal, from 2000 to 2015, were analyzed to identify and compare the trends of vegetation and temperature changes during the period. The data were obtained from moderate resol...

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Main Author: I. Sharma
Format: Article
Language:English
Published: Tehran Muncipality 2018-10-01
Series:International Journal of Human Capital in Urban Management
Subjects:
Online Access:http://www.ijhcum.net/article_34048_30786e7560c2b9b334ce55cc33c0e4df.pdf
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spelling doaj-f1a13a9559634361a217a57260e5e82d2020-11-24T21:37:19ZengTehran MuncipalityInternational Journal of Human Capital in Urban Management2476-46982476-47012018-10-013427928610.22034/IJHCUM.2018.04.0234048Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equationsI. Sharma0Department of Mathematics and Computer Science; Faculty of Science and Technology, Prince of Songkla University, Muang, Pattani, 94000 ThailandNormalized difference vegetation index and land surface temperature data, in a sample plot each from east, center and west of Nepal, from 2000 to 2015, were analyzed to identify and compare the trends of vegetation and temperature changes during the period. The data were obtained from moderate resolutions imaging spectro-radiometer. Normalized difference vegetation index charactiszes a resolution of 250×250 m<sup>2</sup> and a 16-day composite period while land surface temperature has 8 days frequency with resolution of 1×1 km<sup>2</sup>. The analysis was separate for normalized difference vegetation index and land surface temperature. The data were seasonally adjusted and then divided into three groups of five year period each, separate for every region. The generalized estimating equations were fitted to each period data. For all three regions, the results showed, there was a trend of  significantly rising vegetation in eastern and western sub urban parts while the central urban city had a significant decline in trend. Whereas the temperature showed statistically significant and uniform fluctuating pattern of change in all three regions. The rate of temperature rise is fastest in central region where the vegetation is continuously declining. However, the results revealed no relationship of trend of changing temperature with that of vegetation.http://www.ijhcum.net/article_34048_30786e7560c2b9b334ce55cc33c0e4df.pdfGeneralized estimating equations (GEE)Land surface temperature (LST)NepalNormalized difference vegetation index (NDVI)Satellite data
collection DOAJ
language English
format Article
sources DOAJ
author I. Sharma
spellingShingle I. Sharma
Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
International Journal of Human Capital in Urban Management
Generalized estimating equations (GEE)
Land surface temperature (LST)
Nepal
Normalized difference vegetation index (NDVI)
Satellite data
author_facet I. Sharma
author_sort I. Sharma
title Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
title_short Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
title_full Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
title_fullStr Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
title_full_unstemmed Modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
title_sort modeling of vegetation index and land surface temperature to identify and compare the changing trends, using generalized estimating equations
publisher Tehran Muncipality
series International Journal of Human Capital in Urban Management
issn 2476-4698
2476-4701
publishDate 2018-10-01
description Normalized difference vegetation index and land surface temperature data, in a sample plot each from east, center and west of Nepal, from 2000 to 2015, were analyzed to identify and compare the trends of vegetation and temperature changes during the period. The data were obtained from moderate resolutions imaging spectro-radiometer. Normalized difference vegetation index charactiszes a resolution of 250×250 m<sup>2</sup> and a 16-day composite period while land surface temperature has 8 days frequency with resolution of 1×1 km<sup>2</sup>. The analysis was separate for normalized difference vegetation index and land surface temperature. The data were seasonally adjusted and then divided into three groups of five year period each, separate for every region. The generalized estimating equations were fitted to each period data. For all three regions, the results showed, there was a trend of  significantly rising vegetation in eastern and western sub urban parts while the central urban city had a significant decline in trend. Whereas the temperature showed statistically significant and uniform fluctuating pattern of change in all three regions. The rate of temperature rise is fastest in central region where the vegetation is continuously declining. However, the results revealed no relationship of trend of changing temperature with that of vegetation.
topic Generalized estimating equations (GEE)
Land surface temperature (LST)
Nepal
Normalized difference vegetation index (NDVI)
Satellite data
url http://www.ijhcum.net/article_34048_30786e7560c2b9b334ce55cc33c0e4df.pdf
work_keys_str_mv AT isharma modelingofvegetationindexandlandsurfacetemperaturetoidentifyandcomparethechangingtrendsusinggeneralizedestimatingequations
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