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- W172340338 abstract "ABSTRACT The aim of the research reported herein is the study of the deployment characteris-tics of the Indoor GPS (iGPS) system within a large scale production facility and the definition of its operational performance under realistic conditions. iGPS belongs to a new generation of positioning and tracking systems that can be used for automated production with the aim of reducing production time, cost and improving product quality. The nominal unlimited scalability and flexibility of a large volume transmitter network are the most significant advantages of the iGPS compared to other metrol-ogy systems, such as CMMs, laser trackers or photogrammetry. The flexible nature and sub-millimetre accuracy level of the iGPS over the entire measurement volume provides novel application opportunities in the manufacturing processes. This paper reports on the first experimental study conducted in a large volume production envi-ronment with the focus being on demonstrating the real environment operational per-formance of the iGPS. Measurement data of several points obtained by a laser tracker, a measurement system of higher theoretical accuracy, is used for compari-son. Whilst the iGPS showed to be highly repeatable, the size of the production facil-ity and environmental factors proved to be challenging in terms of measurement un-certainty. KEYWORDS: Large Scale Metrology, Indoor GPS, Measurement, Laser Tracker, Uncertainty 1. INTRODUCTION Dimensional measurement is an integral part of manufacturing in many industries that helps to understand and control the variation of manufacturing processes. The objective of any meas-urement process is to determine a value for the measurand /1/. There are various technologies and methods developed to fulfil various measurement requirements. In dimensional metrology, the science of dimensional measurement, many technologies are available; each of them suit-able for a different application and environment and producing different levels of accuracy. In the field of Large Volume Metrology (LVM) that is defined as the metrology of large machines and structures in which the linear dimensions range from tens to hundreds of meters /2/ several solutions exist. Most of these systems utilise laser based technologies due to the reliability and the effective measurement range of this technology. The flexibility of new LVM systems has extended their applications from the conventional verifi-cation and inspection of the products and systems to areas such as metrology enabled manu-facturing and assembly. However, verification of parts during and after their manufacture re-mains to be an important consideration. The increasing trend towards tighter tolerances brings new challenges to the manufacturing and measurement of products, especially large scale ones. There is an increasing demand for more flexible, reliable, and higher accuracy metrology solutions, which inevitably increase the cost of the finished products. Many companies are fac-ing manufacturing challenges that force them to seek new technologies in order to stay competi-" @default.
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- W172340338 date "2008-10-01" @default.
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- W172340338 title "Experimental Deployment of the Indoor GPS Large Volume Metrology System in a Large Scale Production Facility" @default.
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