Article ID Journal Published Year Pages File Type
5007889 Optics and Lasers in Engineering 2017 10 Pages PDF
Abstract

•Developed a pixel-wise absolute phase recovery framework for large depth range objects.•Only three phase-shifted patterns are required for pixel by pixel absolute phase unwrapping.•Achieved 40 Hz absolute 3D shape measurement with a conventional DFP system.

This paper presents a method that can recover absolute phase pixel by pixel without embedding markers on three phase-shifted fringe patterns, acquiring additional images, or introducing additional hardware component(s). The proposed three-dimensional (3D) absolute shape measurement technique includes the following major steps: (1) segment the measured object into different regions using rough priori knowledge of surface geometry; (2) artificially create phase maps at different z planes using geometric constraints of structured light system; (3) unwrap the phase pixel by pixel for each region by properly referring to the artificially created phase map; and (4) merge unwrapped phases from all regions into a complete absolute phase map for 3D reconstruction. We demonstrate that conventional three-step phase-shifted fringe patterns can be used to create absolute phase map pixel by pixel even for large depth range objects. We have successfully implemented our proposed computational framework to achieve absolute 3D shape measurement at 40 Hz.

Related Topics
Physical Sciences and Engineering Engineering Electrical and Electronic Engineering
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