Airborne light detection and ranging (lidar) has become a powerful support for acquiring geospatial data in numerous geospatial applications and analyses. However, the process of extracting ground points accurately and effectively from raw point clouds remains a big challenge. This study presents an improved top-hat filter with a sloped brim to enhance the robustness of ground point extraction for complex objects and terrains. The top-hat transformation is executed and the elevation change intensity of the transitions between the obtained top-hats and outer brims is inspected to suppress the omission error caused by protruding terrain features. Finally, the nonground objects of complex structures, such as multilayer buildings, are identif...
The technology of airborne Light Detection And Ranging (LIDAR) is capable of acquiring dense and acc...
Airborne light detection and ranging (LiDAR) technology has become the mainstream data source in geo...
Filtering is the key to acquire digital terrain model from airborne LiDAR point cloud. In this paper...
Airborne light detection and ranging (lidar) has become a powerful support for acquiring geospatial ...
An important step for processing airborne Light Detection And Ranging (LiDAR) data is point cloud fi...
An important step for processing airborne Light Detection And Ranging (LiDAR) data is point cloud fi...
Separating point clouds into ground and non-ground measurements is an essential step to generate dig...
Automatic ground filtering is an essential step for Digital Elevation Model (DEM) generation, which ...
Abstract: A filtering algorithm is proposed that accurately extracts ground data from airborne light...
Airborne Light Detection and Ranging (LIDAR) technology has become the primary method to derive high...
Ground filtering is an essential procedure in almost all LiDAR applications. However, most existing ...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
Recent advances in airborne light detection and ranging (LIDAR) technology allow rapid and inexpensi...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
The technology of airborne Light Detection And Ranging (LIDAR) is capable of acquiring dense and acc...
Airborne light detection and ranging (LiDAR) technology has become the mainstream data source in geo...
Filtering is the key to acquire digital terrain model from airborne LiDAR point cloud. In this paper...
Airborne light detection and ranging (lidar) has become a powerful support for acquiring geospatial ...
An important step for processing airborne Light Detection And Ranging (LiDAR) data is point cloud fi...
An important step for processing airborne Light Detection And Ranging (LiDAR) data is point cloud fi...
Separating point clouds into ground and non-ground measurements is an essential step to generate dig...
Automatic ground filtering is an essential step for Digital Elevation Model (DEM) generation, which ...
Abstract: A filtering algorithm is proposed that accurately extracts ground data from airborne light...
Airborne Light Detection and Ranging (LIDAR) technology has become the primary method to derive high...
Ground filtering is an essential procedure in almost all LiDAR applications. However, most existing ...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
Recent advances in airborne light detection and ranging (LIDAR) technology allow rapid and inexpensi...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
The capability of acquiring accurate and dense three-dimensional geospatial information that covers ...
The technology of airborne Light Detection And Ranging (LIDAR) is capable of acquiring dense and acc...
Airborne light detection and ranging (LiDAR) technology has become the mainstream data source in geo...
Filtering is the key to acquire digital terrain model from airborne LiDAR point cloud. In this paper...