Schlieren deflectometry aims at characterizing the deflections undergone by refracted incident light rays at any surface point of a transparent object. For smooth surfaces, each surface location is actually associated with a sparse deflection map (or spectrum). This paper presents a novel method to compressively acquire and reconstruct such spectra. This is achieved by altering the way deflection information is captured in a common Schlieren Deflectometer, i.e., the deflection spectra are indirectly observed by the principle of spread spectrum compressed sensing. These observations are realized optically using a 2-D Spatial Light Modulator (SLM) adjusted to the corresponding sensing basis and whose modulations encode the light deviation sub...
The present study introduces an experimental technique based on a Free Surface-Synthetic Schlieren (...
Specular surfaces can be measured with deflectometric methods. The solutions form a one-parameter fa...
Deflectometry is a full-field gradient technique that lends itself very well to testing specular sur...
Schlieren deflectometry aims at characterizing the deflections undergone by refracted incident light...
Schlieren deflectometry aims at measuring deflections of light rays from transparent objects, which ...
Light rays incident on a transparent object of uniform refractive index undergo deflections, which u...
An effective yet simple quantitative synthetic Schlieren imaging technique is presented in this pape...
Optical Deflectometric Tomography (ODT) provides an accurate characterization of transparent materia...
We present a new optical tomography technique based on phase-shifting schlieren deflectometry. The p...
Phase-measuring deflectometry combines the advantages of fringe-phase measurement, with sensitivity ...
In this paper, we propose a technique based on a color fringe pattern used on deflectometry experime...
The dynamic inspection and reverse engineering of specular freeform surfaces is a challenge so far l...
Reconstructing a specular surface from observation of structured illumination is mathematically a se...
We present a new method to measure specular free-form surfaces within seconds. We call the measuring...
Transparent materials are utilized in different products and have to meet high quality requirements,...
The present study introduces an experimental technique based on a Free Surface-Synthetic Schlieren (...
Specular surfaces can be measured with deflectometric methods. The solutions form a one-parameter fa...
Deflectometry is a full-field gradient technique that lends itself very well to testing specular sur...
Schlieren deflectometry aims at characterizing the deflections undergone by refracted incident light...
Schlieren deflectometry aims at measuring deflections of light rays from transparent objects, which ...
Light rays incident on a transparent object of uniform refractive index undergo deflections, which u...
An effective yet simple quantitative synthetic Schlieren imaging technique is presented in this pape...
Optical Deflectometric Tomography (ODT) provides an accurate characterization of transparent materia...
We present a new optical tomography technique based on phase-shifting schlieren deflectometry. The p...
Phase-measuring deflectometry combines the advantages of fringe-phase measurement, with sensitivity ...
In this paper, we propose a technique based on a color fringe pattern used on deflectometry experime...
The dynamic inspection and reverse engineering of specular freeform surfaces is a challenge so far l...
Reconstructing a specular surface from observation of structured illumination is mathematically a se...
We present a new method to measure specular free-form surfaces within seconds. We call the measuring...
Transparent materials are utilized in different products and have to meet high quality requirements,...
The present study introduces an experimental technique based on a Free Surface-Synthetic Schlieren (...
Specular surfaces can be measured with deflectometric methods. The solutions form a one-parameter fa...
Deflectometry is a full-field gradient technique that lends itself very well to testing specular sur...