A platform for research: civil engineering, architecture and urbanism
Regional adaptation of a dynamic global vegetation model using a remote sensing data derived land cover map of Russia
The dynamic global vegetation model (DGVM) SEVER has been regionally adapted using a remote sensing data-derived land cover map in order to improve the reconstruction conformity of the distribution of vegetation functional types over Russia. The SEVER model was modified to address noticeable divergences between modelling results and the land cover map. The model modification included a light competition method elaboration and the introduction of a tundra class into the model. The rigorous optimisation of key model parameters was performed using a two-step procedure. First, an approximate global optimum was found using the efficient global optimisation (EGO) algorithm, and afterwards a local search in the vicinity of the approximate optimum was performed using the quasi-Newton algorithm BFGS. The regionally adapted model shows a significant improvement of the vegetation distribution reconstruction over Russia with better matching with the satellite-derived land cover map, which was confirmed by both a visual comparison and a formal conformity criterion.
Regional adaptation of a dynamic global vegetation model using a remote sensing data derived land cover map of Russia
The dynamic global vegetation model (DGVM) SEVER has been regionally adapted using a remote sensing data-derived land cover map in order to improve the reconstruction conformity of the distribution of vegetation functional types over Russia. The SEVER model was modified to address noticeable divergences between modelling results and the land cover map. The model modification included a light competition method elaboration and the introduction of a tundra class into the model. The rigorous optimisation of key model parameters was performed using a two-step procedure. First, an approximate global optimum was found using the efficient global optimisation (EGO) algorithm, and afterwards a local search in the vicinity of the approximate optimum was performed using the quasi-Newton algorithm BFGS. The regionally adapted model shows a significant improvement of the vegetation distribution reconstruction over Russia with better matching with the satellite-derived land cover map, which was confirmed by both a visual comparison and a formal conformity criterion.
Regional adaptation of a dynamic global vegetation model using a remote sensing data derived land cover map of Russia
S Khvostikov (author) / S Venevsky (author) / S Bartalev (author)
2015
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
A Remote Sensing Based Vegetation Classification Logic for Global Land Cover Analysis
Online Contents | 1995
|Remote sensing of vegetation and land-cover change in Arctic Tundra Ecosystems
Online Contents | 2004
|Land Vegetation Change Detection Using Remote Sensing and GIS
TIBKAT | 2021
|Land Vegetation Change Detection Using Remote Sensing and GIS
Springer Verlag | 2020
|Measuring intra-urban poverty using land cover and texture metrics derived from remote sensing data
Online Contents | 2015
|