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Binarized dual phase-shifting method for high-quality 3D shape measurement.
Applied Optics
|August 22, 2018
Summary
This study introduces a binarized dual phase-shifting (BDPS) method for high-speed 3D measurements. BDPS generates high-quality phase maps using only three binary patterns, improving accuracy without sacrificing speed.
Area of Science:
- Optical metrology
- 3D surface reconstruction
- Computer vision
Background:
- 1-bit binary patterns offer speed advantages over 8-bit sinusoidal patterns in high-speed applications.
- Binary patterns, however, suffer from lower phase quality, particularly when the projector is nearly focused.
- Dual phase-shifting methods reduce phase errors but increase pattern count and reduce measurement speed.
Purpose of the Study:
- To propose a novel binarized dual phase-shifting (BDPS) method.
- To achieve high-quality phase maps using a reduced number of phase-shifted binary patterns.
- To maintain high measurement speed while improving phase accuracy in 3D profilometry.
Main Methods:
- Merging two sets of squared binary phase-shifting patterns into a single set with three gray levels.
- Employing 2D area modulation to binarize the three-gray-level patterns.
- Implementing the BDPS technique for phase error reduction in binary defocusing.
Main Results:
- The BDPS method successfully generates high-quality phase maps using only three phase-shifted binary patterns.
- Error reduction is achieved for the binary defocusing technique.
- The method maintains the speed advantage of binary patterns without increasing pattern count or bit depth.
Conclusions:
- The proposed BDPS method effectively reduces phase errors in binary pattern-based 3D measurements.
- BDPS offers a balance between measurement accuracy and speed, outperforming traditional methods.
- Validated through quantitative evaluations on both flat and complex surfaces.
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