Optics Express · 2018 · 36 citations · 19 references
EngineeringMeasurementOptic DesignMechanical EngineeringOptical TestingInterferometryParameter Selection StrategiesComputer-aided DesignCalibrationPsf MeasurementGeometrical AccuracyFringe Formation ProcessInstrumentationComputational GeometryGeometric ModelingFreeform OpticOptical System AlignmentOptical TolerancingPhase RetrievalBinary Fringe PatternsNatural SciencesGeometrical Optic3D ScanningFringe Period
Three-dimensional (3D) shape measurement system with binary defocusing technique can perform high-speed and flexible measurements if binary fringe patterns are defocused by projector properly. However, the actual defocusing degree is difficult to set, and the fringe period is difficult to determine accordingly. In this study, we present a square-binary defocusing parameter selection framework. First, we analyze the fringe formation process mathematically. The defocusing degree is quantified and manipulated by using the focusing distance of projector, which is calibrated by point spread function measurement. To optimize parameter selection, single-point sinusoidal error is modeled as the objective function for the evaluation of the defocusing effect. We verify the correctness by using different parameter combinations and object measurements in our experiments. The appropriate defocusing parameters can be easily obtained according to the analysis of practical system setup, which improves the quality and robustness of the system.
19
Proceedings European Conference on Computer Vision 2002
Anders Heyden, Gunnar Sparr, Mads Nielsen et al. · Lund University Publications (Lund University) · 2002 · 5.2K citations
Pulse-width modulation in defocused three-dimensional fringe projection
Gastón A. Ayubi, Jaime A. Ayubi, J. Matías Di Martino et al. · Optics Letters · 2010 · 190 citations
Three-dimensional shape measurement with binary dithered patterns
Yajun Wang, Song Zhang · Applied Optics · 2012 · 174 citations
Phase Error, Engineering, Geometry +21