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Metrological Characterization of Measurement Systems through Monte Carlo Simulations, Design of Experiments and Robotic Manipulation

机译:通过蒙特卡罗模拟测量系统的计量表征,实验和机器人操纵设计

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This paper proposes a procedure for performing the metrological characterization of multi-degrees of freedom measuring devices, that could be exploited for control and monitoring in the industry 4.0 context. The developed methodology is constituted by both a theoretical and an experimental phase. The metrological analysis is divided in the 3D kinematic modelling of the system, the computation of the measurement uncertainty using the Design of Experiments and Monte Carlo simulations, and the assessment of the experimental uncertainty in operational conditions as per the ISO Guide to the expression of Uncertainty in Measurement. The case study of an instrument for the measurement of 3D misalignment between two surfaces is eventually presented and discussed.
机译:本文提出了一种用于执行多程度的自由度测量装置的计量表征的过程,可以在行业4.0环境中进行控制和监测。 开发方法由理论和实验阶段构成。 计量分析在系统的3D运动学建模中,使用实验和蒙特卡罗模拟的设计计算测量不确定度,以及根据ISO指南的不确定性表达的操作条件下的实验不确定性的评估 在测量中。 最终呈现并讨论了用于测量两个表面之间3D未对准的仪器的案例研究。

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