We present a method for fusing two acquisition modes, 2D photographs and 3D LiDAR scans, for depth-layer de-composition of urban facades. The two modes have comple-mentary characteristics: point cloud scans are coherent and inherently 3D, but are often sparse, noisy, and incomplete; photographs, on the other hand, are of high resolution, easy to acquire, and dense, but view-dependent and inherently 2D, lacking critical depth information. In this paper we use photographs to enhance the acquired LiDAR data. Our key observation is that with an initial registration of the 2D and 3D datasets we can decompose the input photographs into rectified depth layers. We decompose the input photographs into rectangular planar fragments and diffuse depth i...
Aerial Light Detection and Ranging (LiDAR) offers the potential to auto-generate detailed, three-dim...
This paper describes a process for the automated generation of 3D buildings using 2D building footpr...
AbstractIn this paper we present a practical approach for generating an occlusion-free textured 3D m...
Recent advances in scanning technologies, in particular devices that extract depth through active se...
<p>Change detection is an essential step to locate the area where an old model should be updated. Wi...
Change detection is an essential step to locate the area where an old model should be updated. With ...
In this paper we address the problem of automatic laser scan registration in urban environments. Thi...
Automatically discovering high-level facade structures in unorganized 3D point clouds of urban scene...
This paper presents a method that automatically detects windows of different shapes, in 3D LiDAR poi...
We present a fully automatic approach for reconstructing compact 3D building models from large-scale...
In this paper we present a practical approach for generating an occlusion-free textured 3D map of ur...
UnrestrictedIn recent years there has been an increasing demand for applications which employ miniat...
Change detection is essential to keep 3D city models up-to-date. LiDAR data with high accuracy are u...
This project relates to automated 3D model generation of Urban Environments. Ground based modeling i...
This paper describes a process for the automated generation of 3D buildings using 2D building footpr...
Aerial Light Detection and Ranging (LiDAR) offers the potential to auto-generate detailed, three-dim...
This paper describes a process for the automated generation of 3D buildings using 2D building footpr...
AbstractIn this paper we present a practical approach for generating an occlusion-free textured 3D m...
Recent advances in scanning technologies, in particular devices that extract depth through active se...
<p>Change detection is an essential step to locate the area where an old model should be updated. Wi...
Change detection is an essential step to locate the area where an old model should be updated. With ...
In this paper we address the problem of automatic laser scan registration in urban environments. Thi...
Automatically discovering high-level facade structures in unorganized 3D point clouds of urban scene...
This paper presents a method that automatically detects windows of different shapes, in 3D LiDAR poi...
We present a fully automatic approach for reconstructing compact 3D building models from large-scale...
In this paper we present a practical approach for generating an occlusion-free textured 3D map of ur...
UnrestrictedIn recent years there has been an increasing demand for applications which employ miniat...
Change detection is essential to keep 3D city models up-to-date. LiDAR data with high accuracy are u...
This project relates to automated 3D model generation of Urban Environments. Ground based modeling i...
This paper describes a process for the automated generation of 3D buildings using 2D building footpr...
Aerial Light Detection and Ranging (LiDAR) offers the potential to auto-generate detailed, three-dim...
This paper describes a process for the automated generation of 3D buildings using 2D building footpr...
AbstractIn this paper we present a practical approach for generating an occlusion-free textured 3D m...