School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA.
Sensors (Basel). 2022 Dec 30;23(1):411. doi: 10.3390/s23010411.
Measuring speed is a critical factor to reduce motion artifacts for dynamic scene capture. Phase-shifting methods have the advantage of providing high-accuracy and dense 3D point clouds, but the phase unwrapping process affects the measurement speed. This paper presents an absolute phase unwrapping method capable of using only three speckle-embedded phase-shifted patterns for high-speed three-dimensional (3D) shape measurement on a single-camera, single-projector structured light system. The proposed method obtains the wrapped phase of the object from the speckle-embedded three-step phase-shifted patterns. Next, it utilizes the Semi-Global Matching (SGM) algorithm to establish the coarse correspondence between the image of the object with the embedded speckle pattern and the pre-obtained image of a flat surface with the same embedded speckle pattern. Then, a computational framework uses the coarse correspondence information to determine the fringe order pixel by pixel. The experimental results demonstrated that the proposed method can achieve high-speed and high-quality 3D measurements of complex scenes.
测量速度是减少动态场景捕捉中运动伪影的关键因素。相移方法具有提供高精度和密集 3D 点云的优势,但相位展开过程会影响测量速度。本文提出了一种绝对相位展开方法,该方法仅使用三个嵌入散斑的相移图案,即可在单相机、单投影仪结构光系统上实现高速三维(3D)形状测量。所提出的方法从嵌入散斑的三步骤相移图案中获取物体的包裹相位。接下来,它利用 Semi-Global Matching(SGM)算法在嵌入散斑图案的物体图像和预先获取的具有相同嵌入散斑图案的平面图像之间建立粗略对应关系。然后,计算框架使用粗略对应信息逐像素确定条纹阶数。实验结果表明,所提出的方法可以实现复杂场景的高速、高质量 3D 测量。