TY - GEN ID - heidok36965 TI - Object detection in airborne LIDAR data for improved solar radiation modeling in urban areas AV - public KW - Airborne LiDAR KW - 3D Point Cloud KW - Solar Potential KW - 3D Horizon KW - Segmentation KW - Vegetation N2 - In times of higher market prices of fossil fuels and to meet the increasingly environmental and economic threads of climate change renewable energy must play a major role for global energy supply. This paper focuses on a new method for fully automated solar potential assessment of roof planes from airborne LiDAR data and uses the full 3D information for both, roof plane detection and solar potential analysis. An image based candidate region detection algorithm reduces the data volume of the point cloud and identi?es potential areas containing buildings with high completeness (97%). Three dimensional roof planes are extracted from the building candidate regions and their aspect and slope are calculated. The horizon of each roof plane is calculated within the 3D point cloud and thus shadowing effects of nearby objects such as vegetation, roofs, chimneys, dormers etc. are respected in a proper way. In contrast to other objects such as walls or buildings vegetation is characterized by transparent properties. Thus, in a further step vegetation is detected within the remaining non-roof points and transparent shadow values are introduced by calculating a local transparency measure averaged per tree segment. The following solar potential analysis is performed for regularly distributed roof points and results in both, (i) the annual sum of the direct and diffuse radiation for each roof plane and (ii) in a detailed information about the distribution of radiation within one roof. By calculating a clear sky index, cloud cover effects are considered using data from a nearby meteorological ground station. UR - https://archiv.ub.uni-heidelberg.de/volltextserver/36965/ T3 - International archives of photogrammetry, remote sensing and spatial information sciences Y1 - 2009/// A1 - Jochem, Andreas A1 - Höfle, Bernhard A1 - Hollaus, Markus A1 - Rutzinger, Martin SP - 1 EP - 6 CY - Beijing PB - ISPRS ER -