Algorithms and models for 3D shape measurement using digital fringe projections
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Summary
This dissertation presents a new mathematical model for SMDFP that provides an accurate modeling of the optical geometry ofSMDFP systems and presents a comprehensive uncertainty model for describing the relations between various error sources and the resulting uncertainties in shape measurements.
- Type
- dissertation
- Published
- 2007-01-16
- Cited by
- 45
- References
- 69
- Access
- Open access
- OpenAlex
- https://openalex.org/W118420177
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:59754638
Keywords
Computer science, Optics, Artificial intelligence, Algorithm, Physics
References
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- Photogrammetric measurement to one part in a million
- Lens distortion for close-range photogrammetry
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- Accurate procedure for the calibration of a structured light system
- Design of algorithms for phase measurements by the use of phase stepping.
- Fringe pattern analysis methods: up-to-date review
- Image sensing model and computer simulation for CCD camera systems
- Design of optical triangulation devices
- Topometric sensors for prototyping and manufacturing
- An improved illumination model for shaded display
- Three-dimensional point cloud registration by matching surface features with relaxation labeling method
- Grazing holographic projection of object-adapted fringes for shape measurements with enhanced sensitivity.
- Measurement of surface profile using digital image correlation
- Automated phase-measuring profilometry of 3-D diffuse objects.
- Error compensation for a three-dimensional shape measurement system
- Shape measurement of small objects using LCD fringe projection with phase shifting
- Phase-shifting digital holography.
- Temporal phase-unwrapping algorithm for automated interferogram analysis.
Cited by
- Rapid 3D measurement of human faces for biometric application by digital fringe projection with digital light projection (DLP®)
- Endoscopic fringe projection for in-situ inspection of a sheet-bulk metal forming process
- Single image geometry inspection using inverse endoscopic fringe projection
- THE MEASUREMENT OF WELD TOE RADIUS USING THREE NON-DESTRUCTIVE TECHNIQUES
- Fatigue strength of welds in 800 MPa yield strength steels : Effects of weld toe geometry and residual stress
- Spatially-Dense, Multi-Spectral, Frequency-Domain Diffuse Optical Tomography of Breast Cancer
- Non-destructive measurement of weld toe radius using Weld Impression Analysis, Laser Scanning Profiling and Structured Light Projection methods
- Generic design methodology for the development of three-dimensional structured-light sensory systems for measuring complex objects
- An introduction to image-based 3D surface reconstruction and a survey of photometric stereo methods
- Using inverse fringe projection to speed up the detection of local and global geometry defects on free-form surfaces
- High resolution measurements of filigree, inner geometries with endoscopic micro fringe projection
- Evaluation of coded structured light methods using ground truth
- Simulation-based determination of local optical probing uncertainty for fringe projection measurements
- 3D range scan enhancement using image-based methods
- The relative effects of residual stresses and weld toe geometry on fatigue life of weldments
- Identification of deformations on smooth surfaces
- Quantitative monitoring of gravity erosion using a novel 3D surface measuring technique: validation and case study
- Generic nonsinusoidal fringe model and gamma calibration in phase measuring profilometry.
- EFFECT OF DIGITAL FRINGE PROJECTION PARAMETERS ON 3D RECONSTRUCTION ACCURACY
- Mapping bed-level evolution in laboratory flumes by means of structured light
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