An original procedure is presented for the calibration of fringe-projection-based 3-D vision systems. The proposed approach estimates both the phase-to-depth and transverse relationships by directly measuring the phase maps for only three planes placed within the calibration volume and then estimating the phase maps for a number of other ldquovirtual planes.rdquo Experimental tests conducted on a fringe projection system show the effectiveness of the proposed procedure
The goal of optical 3D-measurements is the determination of cartesian coordinates of surfaces. Using...
This thesis focuses on improving the accuracy of using multiple-shot fringe projection profilometry ...
In order to acquire an accurate three-dimensional (3D) measurement, the traditional fringe projectio...
An original procedure is presented for the calibration of fringe-projection-based 3-D vision systems...
A new algorithm for determining the phase of reference points allows for better calibration. Fringe ...
The increased significance and need for three-dimensional (3D) shape measurement in various industri...
The increased significance and need for three-dimensional (3D) shape measurement in various industri...
An important step of phase calculation-based fringe projection systems is 3D calibration, which bui...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
Many industrial applications require accurate and rapid measurement of the 3-D shapes of physical ob...
Three-dimensional (3D) shape measurement and imaging technique, for determining the 3D shape of obje...
Optical three-dimensional (3D) surface-shape measurement has diverse applications in engineering, co...
When phase shifting profilometry (PSP) is emplyed for 3-D shape measurement, the object must be kept...
The goal of optical 3D-measurements is the determination of cartesian coordinates of surfaces. Using...
This thesis focuses on improving the accuracy of using multiple-shot fringe projection profilometry ...
In order to acquire an accurate three-dimensional (3D) measurement, the traditional fringe projectio...
An original procedure is presented for the calibration of fringe-projection-based 3-D vision systems...
A new algorithm for determining the phase of reference points allows for better calibration. Fringe ...
The increased significance and need for three-dimensional (3D) shape measurement in various industri...
The increased significance and need for three-dimensional (3D) shape measurement in various industri...
An important step of phase calculation-based fringe projection systems is 3D calibration, which bui...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
A novel calibration method for whole field three-dimensional shape measurement by means of fringe pr...
Many industrial applications require accurate and rapid measurement of the 3-D shapes of physical ob...
Three-dimensional (3D) shape measurement and imaging technique, for determining the 3D shape of obje...
Optical three-dimensional (3D) surface-shape measurement has diverse applications in engineering, co...
When phase shifting profilometry (PSP) is emplyed for 3-D shape measurement, the object must be kept...
The goal of optical 3D-measurements is the determination of cartesian coordinates of surfaces. Using...
This thesis focuses on improving the accuracy of using multiple-shot fringe projection profilometry ...
In order to acquire an accurate three-dimensional (3D) measurement, the traditional fringe projectio...