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Three-Dimensional Network Adjustment of Laser Tracker Measurements for Large-Scale Metrology Applications

机译:大规模计量应用激光跟踪器测量的三维网络调整

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摘要

The adjustment of laser tracker network measurements for large-scale metrology applications has unique considerations not commonly encountered in the network adjustment approaches generally used in either standard metrology or in traditional geodetic surveying. Many applications that require the measurement accuracy of a laser tracker are confined to small working areas to measure the dimensional quality of manufactured parts. Large-scale metrology applications require the same high measurement accuracy, but over a comparatively larger working area. This paper describes a unified least-squares approach to adjust three-dimensional survey network measurements that takes into account the unique considerations of large-scale metrology networks. The impetus for these unique considerations arises from an application that falls neatly between the disciplines of metrology and geodesy-resembling a mixture of the conditions and requirements from both. This paper will also describe a case study of a large-scale metrology survey network used to align the particle accelerator at Michigan State University's Facility for Rare Isotope Beams (FRIB).
机译:激光跟踪器网络测量的用于大规模计量应用的调整具有在网络调整不经常遇到的独特的考虑方法通常在任一标准计量或在传统的大地测量使用。需要跟踪器被限制在小的工作区域来测量制造的部件的尺寸质量的激光的测定精度的许多应用。大型计量应用要求相同的测量精度高,但在一个相对较大的工作区域。本文介绍一种统一的最小二乘法来调整立体调查网络测量,考虑到大型计量网络的独特的考虑。这些独特的考虑的动力产生于该计量和与大地测量类似的从双方的条件和要求的混合物的学科之间落在整齐的应用程序。本文还将介绍用于对齐在密歇根州立大学的稀有同位素束流装置(FRIB)的粒子加速器大规模计量调查网为例。

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