Title :
3D Reconstruction of Urban Areas
Author :
Poullis, Charalambos ; You, Suya
Author_Institution :
Immersive & Creative Technol. Lab., Cyprus Univ. of Technol., Limassol, Cyprus
Abstract :
Virtual representations of real world areas are increasingly being employed in a variety of different applications such as urban planning, personnel training, simulations, etc. Despite the increasing demand for such realistic 3D representations, it still remains a very hard and often manual process. In this paper, we address the problem of creating photo realistic 3D scene models for large-scale areas and present a complete system. The proposed system comprises of two main components: (1) A reconstruction pipeline which employs a fully automatic technique for extracting and producing high-fidelity geometric models directly from Light Detection and Ranging (LiDAR) data and (2) A flexible texture blending technique for generating high-quality photo realistic textures by fusing information from multiple optical sensor resources. The result is a photo realistic 3D representation of large-scale areas(city-size) of the real-world. We have tested the proposed system extensively with many city-size datasets which confirms the validity and robustness of the approach. The reported results verify that the system is a consistent work flow that allows non-expert and non-artists to rapidly fuse aerial LiDAR and imagery to construct photo realistic 3D scene models.
Keywords :
image fusion; image reconstruction; image representation; image texture; optical radar; optical sensors; solid modelling; aerial LiDAR; flexible texture blending technique; geometric models; high-quality photorealistic textures; information fusion; large-scale urban areas; light detection and ranging data; optical sensor; photorealistic 3D representation; photorealistic 3D scene models; reconstruction pipeline; Buildings; Cameras; Computational modeling; Geometry; Image reconstruction; Solid modeling; Three dimensional displays; LiDAR; large-scale; modeling; reconstruction; texturing;
Conference_Titel :
3D Imaging, Modeling, Processing, Visualization and Transmission (3DIMPVT), 2011 International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-61284-429-9
Electronic_ISBN :
978-0-7695-4369-7
DOI :
10.1109/3DIMPVT.2011.14