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A one-step intrinsic and extrinsic calibration method for laser line scanner operation in coordinate measuring machines

机译:坐标测量机中激光线扫描仪操作的一步式内在和外在校准方法

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摘要

A technique for intrinsic and extrinsic calibration of laser line scanners, also called laser triangulation sensors (LTSs), for integration in a coordinate measuring machine (CMM) is presented in this paper. Setting out from the modeling of a commercial LTS for use in a CMM and the algorithms implemented for image capture and processing, with the use of a gauge object, a one-step calibration procedure has been developed to obtain both intrinsic parameters--laser plane, CCD sensor and camera geometry--and extrinsic parameters which relate the LTS's reference system to the CMM's reference system, integrating both mathematical models. This method performs both calibrations in a single step, thus avoiding the digitalization of a reference sphere in order to obtain the extrinsic parameters, or optimization procedures subsequent to LTS calibration. The results obtained in accuracy and repeatability tests performed on gauge geometric primitives attest to the viability of this technique for the integration of LTSs in CMMs.
机译:本文介绍了一种用于激光线扫描仪的内部和外部校准的技术,也称为激光三角测量传感器(LTS),可集成到坐标测量机(CMM)中。从用于CMM的商用LTS的建模以及为实现图像捕获和处理而实现的算法出发,通过使用量规对象出发,已经开发出了一步校准程序以获取两个固有参数(激光平面) ,CCD传感器和照相机的几何形状以及外部参数,这些参数将LTS的参考系统与CMM的参考系统相关联,并整合了两个数学模型。此方法在一个步骤中执行两个校准,因此避免了参考球的数字化以获得外部参数或LTS校准之后的优化过程。在规范几何图元上执行的准确性和可重复性测试中获得的结果证明了该技术在CMM中集成LTS的可行性。

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