The accuracy of photogrammetric and Lidar dataset integration is dependent on the quality of a group of parameters that models accurately the conditions of the system at the moment of the survey. In this sense, this paper aims to study the effect of the sub-block position in the entire image block to estimate the interior orientation parameters (IOP) in flight conditions to be used in integrated sensor orientation (ISO). For this purpose, five sub-blocks were extracted in different regions of the entire block. Then, in situ camera calibrations were performed using sub-blocks and sets of Lidar control points (LCPs), computed by a three planes’ intersection extracted from the Lidar point cloud on building roofs. The ISO experiments were perfo...
Single scan-line images, obtained from aircrafts, can be used for environmental monitoring, control ...
The determination of image orientation parameters of any sensor during data acquisition became possi...
Comprehensive 3D modeling of our environment requires integration of terrestrial and airborne data, ...
Digital photogrammetric products from the integration of imagery and lidar datasets are a reality no...
The direct determination of exterior orientation parameters (EOP) of aerial images via integration o...
State-of-the-art airborne systems are based on the combination of imaging and navigation sensors, su...
The direct determination of exterior orientation parameters (EOPs) of aerial images via GNSS/INS tec...
Direct measurement of exterior orientation parameters has been a challenge in photogrammetry for man...
Due to the complementary characteristics of lidar and photogrammetry, the integration of data derive...
Due to the complementary characteristics of lidar and photogrammetry, the integration of data derive...
Understanding the factors that influence the quality of unmanned aerial vehicle (UAV)-based products...
Direct measurement of exterior orientation parameters has been a challenge in photogrammetry for man...
The direct determination of exterior orientation parameters (EOPs) of aerial images via GNSS/INS tec...
During recent years the direct sensor orientation with GPS and IMU has gained popularity. These syst...
Airborne LiDAR systems are integrated with a positioning and orientation system including GPS (Globa...
Single scan-line images, obtained from aircrafts, can be used for environmental monitoring, control ...
The determination of image orientation parameters of any sensor during data acquisition became possi...
Comprehensive 3D modeling of our environment requires integration of terrestrial and airborne data, ...
Digital photogrammetric products from the integration of imagery and lidar datasets are a reality no...
The direct determination of exterior orientation parameters (EOP) of aerial images via integration o...
State-of-the-art airborne systems are based on the combination of imaging and navigation sensors, su...
The direct determination of exterior orientation parameters (EOPs) of aerial images via GNSS/INS tec...
Direct measurement of exterior orientation parameters has been a challenge in photogrammetry for man...
Due to the complementary characteristics of lidar and photogrammetry, the integration of data derive...
Due to the complementary characteristics of lidar and photogrammetry, the integration of data derive...
Understanding the factors that influence the quality of unmanned aerial vehicle (UAV)-based products...
Direct measurement of exterior orientation parameters has been a challenge in photogrammetry for man...
The direct determination of exterior orientation parameters (EOPs) of aerial images via GNSS/INS tec...
During recent years the direct sensor orientation with GPS and IMU has gained popularity. These syst...
Airborne LiDAR systems are integrated with a positioning and orientation system including GPS (Globa...
Single scan-line images, obtained from aircrafts, can be used for environmental monitoring, control ...
The determination of image orientation parameters of any sensor during data acquisition became possi...
Comprehensive 3D modeling of our environment requires integration of terrestrial and airborne data, ...