DocumentCode :
2121105
Title :
Modelling directional brightness temperature over a urban areas with simplified geometrical structure
Author :
Yu, Tao ; Tian, Guoliang ; Zhang, Yong ; Bosseno, Roland ; Gu, XingFa ; Hanocq, Jean-Francois ; Legrand, Michel
Author_Institution :
LARSIS, Chinese Acad. of Sci., Beijing, China
Volume :
2
fYear :
2004
fDate :
20-24 Sept. 2004
Firstpage :
1088
Abstract :
A modelling study on the hemispherical variations of directional brightness temperature (DBT) for row-structured building arrays was carried out based on the ground observations over a residential in urban areas. The model assumes that the DBT is a function of component brightness temperatures and their directional fractions. Their fractions in the scene depend on sun-view geometry and the geometry of buildings. The methodology for brightness temperature component classification and temporal variations of component values were analyzed based on the experiment dedicated to urban brightness temperature distribution. Results reveal that the number of typical objects of an urban area and their brightness temperature values vary with time of day due to the complex of urban thermal feature and geometrical structures. Generally, the trend of brightness temperature variation is similar for asphalt road and concrete place, grass and trees, walls of the building toward different directions, and the windows of the walls. In the simulation of urban areas hemispherical DBT, the results reveal an evident row-direction-oriented stripe in DBT polar map, where no hot spot appears. As an initial attempt, the research only focus on the simplified conditions, more complicated structure may be considered in the further researches.
Keywords :
arrays; atmospheric radiation; building materials; geometry; image classification; remote sensing; DBT polar map; asphalt road; brightness temperature component classification; building geometry; component temporal variation; concrete place/grass/trees; different building wall direction; directional brightness temperature; geometrical structure; ground observation; row-direction-oriented stripe; row-structured building array; sun-view geometry; urban areas hemispherical simulation; urban residential area; urban thermal feature; window wall; Asphalt; Brightness temperature; Buildings; Concrete; Geometry; Layout; Roads; Solid modeling; Urban areas; Windows;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2004. IGARSS '04. Proceedings. 2004 IEEE International
Print_ISBN :
0-7803-8742-2
Type :
conf
DOI :
10.1109/IGARSS.2004.1368601
Filename :
1368601
Link To Document :
بازگشت