Off-axis deflectometry is widely applied in the measurement of specular surfaces. However, the measuring accuracy depends on the reliability of geometrical calibration. Existing methods are inconvenient to be utilized due to their disadvantages of low efficiency and operational complexity. A simple geometrical calibration method is proposed by applying a flat mirror with markers, and only one image needs to be captured. A compensation process is introduced to correct the form error of the mirror. Experimental results show that the re-projection errors decrease from 0.319 pixels down to 0.12 pixels; thus the measuring efficiency and accuracy of optical surfaces can be greatly improved.</p
Measuring specular surfaces is of importance in both scientific and industrial applications. In this...
Freeform optics provide excellent performance for a wide variety of applications. However, obtaining...
Optical methods of 3D form measurement permit the surface coordinates of the object under inspection...
This paper presents a novel holistic calibration method for stereo deflectometry system to improve t...
This paper presents a novel geometric parameters analysis to improve the measurement accuracy of ste...
General deflectometric methods are subject to an ambiguity regarding the determination of the surfac...
The deflectometry provides a powerful metrological technique enabling the high-precision testing of ...
Accurate system calibration remains an area of active improvement in deflectometry. Since deflectome...
An accurate system calibration method is presented in this paper to calibrate stereo deflectometry. ...
In the fringe-illumination deflectometry based on reverse-Hartmann-test configuration, ray tracing o...
Photogrammetry and deflectometry are two optical measurement methods that are typically used to meas...
International audienceSpecular and mirror-like surfaces are difficult to reconstruct by the fact tha...
Optical three-dimensional shape metrology has become a key technology in scientific and industrial a...
There is a variety of well developed methods to measure diffusely reflecting free-form surfaces. For...
Deflectometry is a metrology method able to measure large surface slope ranges that can achieve surf...
Measuring specular surfaces is of importance in both scientific and industrial applications. In this...
Freeform optics provide excellent performance for a wide variety of applications. However, obtaining...
Optical methods of 3D form measurement permit the surface coordinates of the object under inspection...
This paper presents a novel holistic calibration method for stereo deflectometry system to improve t...
This paper presents a novel geometric parameters analysis to improve the measurement accuracy of ste...
General deflectometric methods are subject to an ambiguity regarding the determination of the surfac...
The deflectometry provides a powerful metrological technique enabling the high-precision testing of ...
Accurate system calibration remains an area of active improvement in deflectometry. Since deflectome...
An accurate system calibration method is presented in this paper to calibrate stereo deflectometry. ...
In the fringe-illumination deflectometry based on reverse-Hartmann-test configuration, ray tracing o...
Photogrammetry and deflectometry are two optical measurement methods that are typically used to meas...
International audienceSpecular and mirror-like surfaces are difficult to reconstruct by the fact tha...
Optical three-dimensional shape metrology has become a key technology in scientific and industrial a...
There is a variety of well developed methods to measure diffusely reflecting free-form surfaces. For...
Deflectometry is a metrology method able to measure large surface slope ranges that can achieve surf...
Measuring specular surfaces is of importance in both scientific and industrial applications. In this...
Freeform optics provide excellent performance for a wide variety of applications. However, obtaining...
Optical methods of 3D form measurement permit the surface coordinates of the object under inspection...