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Design of Multi-resolution 3D Measurement System Using Light Sectioning Method and Multi-sensor Data Fusion Techniques

机译:利用光切法和多传感器数据融合技术设计多分辨率3D测量系统

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摘要

With the rapid development of shape measurement technique, multi-resolution approach becomes one of valid way to improve the accuracy, to expend measuring range, to reduce occlusion, to realize multi-resolution measurement, and to increase measuring speed simultaneously. A multi-resolution system, which use light sectioning method and multi-sensor data fusion techniques, is developed and has been successful for blade of aviation engine measurement. The system is composed of four laser linear light sources, four cameras and three high-precision mechanical movement devices, has 360° measuring range, and can realize multi-resolution 3-D shape measurement with different amplifying ratios of cameras. Also the measuring principle, the design of system parameter, an algorithm of simultaneous calibration of several cameras are presented.The result shows that the accuracy of the system is about 0.05mm for the sectional circumradius approximately 30 mm measuring range, and also proves the system is feasible and efficient.
机译:随着形状测量技术的飞速发展,多分辨率方法已成为提高精度,扩大测量范围,减少咬合,实现多分辨率测量,同时提高测量速度的有效途径之一。开发了一种使用光切分方法和多传感器数据融合技术的多分辨率系统,并已成功用于航空发动机测量叶片。该系统由四个激光线性光源,四个摄像头和三个高精度机械运动装置组成,具有360°的测量范围,并且可以实现不同分辨率的摄像头的多分辨率3-D形状测量。给出了测量原理,系统参数设计,多台摄像机同时标定的算法。结果表明,该系统在大约30 mm的截面圆周范围内的精度约为0.05mm,也证明了该系统的正确性。是可行的, 高效的。

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