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Dynamic error modeling of CMM based on Bayesian statistical principle

机译:基于贝叶斯统计原理的三坐标测量机动态误差建模

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The dynamic error sources of CMM were analyzed and the character of the dynamic error data was investigated in this paper. Based on the character, the dynamic error model of CMM was built by using Bayesian statistical principle combined with the standard quantity interposition method. The specific error model building procedures was deduced. The CMM dynamic error separating and contrasting experimental devices were designed by using the laser interferometer and the measuring block group. The theoretical analysis and the experiment result indicate that all influences of the CMM dynamic error sources is considered in the model building method by using Bayesian statistical principle combined with the standard values interposition method which meets the CMM working condition. The error model accuracy reaches 2.4 μm and meets the CMM demand. The needed error data size is greatly reduced by using thedynamic error model building method. The error separating principle by lapping-in the measuring block group is simple, which is implemented easily and meets the timing dynamic error correcting needs of the ordinary CMM user.
机译:分析了坐标测量机的动态误差来源,研究了动态误差数据的特征。根据该特征,利用贝叶斯统计原理结合标准量插补法建立了坐标测量机的动态误差模型。推导了特定的错误模型构建过程。利用激光干涉仪和量块组设计了三坐标测量机动态误差分离对比实验装置。理论分析和实验结果表明,采用贝叶斯统计原理结合满足三坐标测量机工作条件的标准值插值方法,在模型建立方法中考虑了三坐标测量机动态误差源的所有影响。误差模型的精度达到2.4μm,并满足CMM要求。使用以下命令可以大大减少所需的错误数据大小 动态错误模型的建立方法。通过将测量块组重叠来进行误差分离的原理很简单,易于实现,满足了普通三坐标测量机用户对定时动态误差校正的需要。

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