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Three-dimensional recovering based on variable focal length via Bezier networks

机译:通过Bezier网络基于可变焦距的三维恢复

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摘要

An automatic technique to perform measurements of variable range via variable focal length is presented. This technique provides measurements of variable range by means of a Bezier network based on a laser line projection. The variable range measurements are performed by adjusting the camera position and the focal length. These parameters are automatically computed during the vision task by means of the line position. Also, the initial calibration of vision parameters is carried out via image processing of the laser line. Thus, the proposed technique avoids external re-calibration, which is applied by the traditional methods of flexible measurements. This leads to an improvement of accuracy of the measurements of variable range via Bezier network. It is because the proposed method does not add errors of external re-calibration to the measurement process. This technique performs measurements of variable range via magnification of the surface depth, when it is not retrieved by the initial configuration. Thus, the system adapts the setup to the resolution of complex surface, which is being profiled. Furthermore, the adjustment does not interrupt the vision procedure because the change of vision parameters is calculated in a fraction of second. The contribution of this technique is elucidated by an evaluation based on the traditional measurements of variable range. Also, the time to achieve the surface measurements is examined.
机译:提出了一种通过可变焦距执行可变范围测量的自动技术。该技术通过基于激光线投影的贝塞尔网络提供了可变范围的测量。通过调整相机位置和焦距来执行可变范围测量。这些参数是在视觉任务期间通过生产线位置自动计算的。同样,视觉参数的初始校准是通过激光线的图像处理进行的。因此,所提出的技术避免了外部重新校准,而外部重新校准是通过传统的灵活测量方法来应用的。这导致通过Bezier网络的可变范围测量的准确性提高。这是因为所提出的方法不会在测量过程中增加外部重新校准的误差。当初始配置未获取时,此技术会通过放大表面深度来执行可变范围的测量。因此,系统使设置适应于正在轮廓化的复杂表面的分辨率。此外,调整不会中断视觉程序,因为视觉参数的变化是在不到一秒的时间内计算出来的。通过对传统的可变范围测量进行评估,可以阐明这项技术的贡献。另外,检查完成表面测量的时间。

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