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Research on the High Precision Laser Line Scanning Measuring System

机译:高精度激光线扫描测量系统的研究

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摘要

Rapid reverse technology is one of the key technologies with which the enterprises develop new product and occupy the market rapidly. How to realize the reverse measurement and CAD geometry reconstruction rapidly and accurately is always the most important focus for the researchers. Based on the laser scanning technology, the realization principle of the laser line scanning measuring system is presented and the approaches to improve the precision are also analysed in the paper. The self-adaptation adjustment of the probe position can move the light knife image to the optimal imaging area of the CCD according to the calibration result, which will ensure the measurement precision of the CCD image. With the inner velocity loop and outer position loop feedback control, the simple axis position precision of the mechanical system can be controlled within 5um. In order to pick up the points of the light knife centre rationally and exactly, the reconstruction-disperse iteration algorithm is put forward. After processed by different iteration times, the optimal points can be obtained. The reconstruction method of curve and surface based on NURBS is also given. The paper presents the application and realization of the system at last, which realizes the curve and surface measurement with high precision.
机译:快速反向技术是企业开发新产品并迅速占领市场的关键技术之一。如何快速,准确地实现逆向测量和CAD几何重构一直是研究人员最关注的重点。基于激光扫描技术,提出了激光线扫描测量系统的实现原理,并分析了提高精度的方法。探头位置的自适应调整可以根据校准结果将光刀图像移至CCD的最佳成像区域,从而保证CCD图像的测量精度。通过内部速度环和外部位置环反馈控制,可以将机械系统的简单轴位置精度控制在5um之内。为了合理,准确地拾取光刀中心点,提出了重构-分散迭代算法。经过不同的迭代时间处理后,可以获得最佳点。给出了基于NURBS的曲线曲面重构方法。最后介绍了该系统的应用与实现,可以实现高精度的曲面和曲面测量。

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