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Complete 3-D Self-calibration of Coordinate Measuring Machines

机译:坐标测量机的完整3-D自校准

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摘要

Self-calibration allows testing machine motion errors without being affected by the precision of calibration artifacts, but its implementation has been limited to 1-D and 2-D domains due to lack of suitable 3-D methodology. We present in this paper an extended algorithm that provides a complete 3-D solution of self-calibration especially for testing coordinate measuring machines. Using a 3-D grid artifact of steel balls, four separate data sets of measurements are taken with different views of the artifact. Then parasitic errors related to the artifact are identified through algebraic manipulation, so that a complete 3-D map of machine systematic errors is constructed. Experimental results validate the proposed algorithm by confirming that the calibration accuracy is limited only by the measurement repeatability of the CMM under test.
机译:自校准允许测试机器运动错误而不受校准伪影的精度的影响,但是由于缺乏合适的3D方法,其实现方式仅限于1-D和2-D域。我们在本文中介绍了一种扩展算法,该算法提供了完整的3D自校准解决方案,特别是用于测试坐标测量机。使用钢球的3D网格伪像,使用伪像的不同视图进行四个单独的数据集测量。然后,通过代数处理来识别与工件相关的寄生错​​误,从而构造出完整的机器系统错误的3-D图。实验结果通过确认校准精度仅受被测CMM的测量重复性来限制,从而验证了该算法的有效性。

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