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Configuration Optimisation of Laser Tracker Location on Verification Process

机译:验证过程中激光跟踪仪位置的配置优化

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摘要

Machine tools are verified and compensated periodically to improve accuracy. The main aim of machine tool verification is to reduce the influence of quasi-static errors, especially geometric errors. As these errors show systematic behavior, their influence can be compensated. However, verification itself is influenced by random uncertainty sources that are usually not considered but affect the results. Within these uncertainty sources, laser tracker measurement noise is a random error that should not be ignored and can be reduced through adequate location of the equipment. This paper presents an algorithm able to analyse the influence of laser tracker location based on nonlinear optimisation, taking into consideration its specifications and machine tool characteristics. The developed algorithm uses the Monte Carlo method to provide a zone around the machine tool where the measurement system should be located in order to improve verification results. To achieve this aim, different parameters were defined, such as the number of tests carried out, and the number and distribution of points, and their influence on the error due to the laser tracker location analysed.
机译:定期对机床进行检验和补偿,以提高精度。机床检验的主要目的是减少准静态误差,特别是几何误差的影响。由于这些错误显示出系统行为,因此可以补偿它们的影响。但是,验证本身受随机不确定性源的影响,通常不考虑随机源,但会影响结果。在这些不确定性源中,激光跟踪仪的测量噪声是一个随机误差,不应忽略,可以通过适当放置设备来降低噪声。本文提出了一种能够基于非线性优化分析激光跟踪器位置影响的算法,同时考虑到其规格和机床特性。开发的算法使用蒙特卡洛方法在机床周围提供测量系统应位于的区域,以改善验证结果。为了达到这个目的,定义了不同的参数,例如执行的测试次数,点的数量和分布以及它们对由于分析激光跟踪器位置而引起的误差的影响。

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