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Structured-Light-Based System for Shape Measurement of the Human Body in Motion

机译:基于结构光的人体运动状态测量系统

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摘要

The existing methods for measuring the shape of the human body in motion are limited in their practical application owing to immaturity, complexity, and/or high price. Therefore, we propose a method based on structured light supported by multispectral separation to achieve multidirectional and parallel acquisition. Single-frame fringe projection is employed in this method for detailed geometry reconstruction. An extended phase unwrapping method adapted for measurement of the human body is also proposed. This method utilizes local fringe parameter information to identify the optimal unwrapping path for reconstruction. Subsequently, we present a prototype 4DBODY system with a working volume of 2.0 × 1.5 × 1.5 m3, a measurement uncertainty less than 0.5 mm and an average spatial resolution of 1.0 mm for three-dimensional (3D) points. The system consists of eight directional 3D scanners functioning synchronously with an acquisition frequency of 120 Hz. The efficacy of the proposed system is demonstrated by presenting the measurement results obtained for known geometrical objects moving at various speeds as well actual human movements.
机译:由于不成熟,复杂和/或价格昂贵,用于测量运动中的人体形状的现有方法在其实际应用中受到限制。因此,我们提出一种基于多光谱分离支持的结构光的方法,以实现多方向和并行采集。此方法采用单帧条纹投影来进行详细的几何重构。还提出了一种适用于人体测量的扩展相位展开方法。该方法利用局部边缘参数信息来识别用于重构的最佳展开路径。随后,我们提出了一个原型4DBODY系统,其工作体积为2.0×1.5×1.5 m 3 ,测量不确定度小于0.5 mm,三维(3D)的平均空间分辨率为1.0 mm点。该系统由八个定向3D扫描仪组成,这些扫描仪以120 Hz的采集频率同步运行。通过呈现针对以各种速度运动的实际几何对象以及实际人类运动获得的测量结果,可以证明所提出系统的功效。

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