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Evaluation of the uncertainty of an optical machine with a vision system for contact-less three-dimensional measurement

机译:通过视觉系统评估用于非接触式三维测量的光学机器的不确定性

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摘要

Optical machines with a vision system containing a video camera are designed to perform contact-less three-dimensional measurements. They are becoming more widely used in the industrial sector because of the many possibilities for automation they permit and because of the speed and economies in measurement tasks that can consequently be obtained. Within dimensional control these machines introduce significant characteristics of flexibility, savings and reliability. Therefore the purpose is to identify the principal metrological characteristics of such machines and so characterise the metrological traceability of the measurements obtained from them. The aim is to qualify each part of the optical machine as well as on the whole. Previously, no metrological traceability of this equipment has been provided in primary metrology, either at national (SIT-Sistema di Taratura in Italia-Calibration System in Italy) or at international level (EA-European co-operation for Accreditation). For this reason we develop a mathematical model that permits the evaluation of the measurement uncertainties in the use of such a device. The purpose is to obtain the certification of the measurement results furnished by the optical machine in as broad a context as possible. The experimental results of the tests are introduced for validating the proposed method. This paper provides the basis of the expression of the uncertainty of a measurement result obtained using the optical measurement machines and it shows the necessary requirements for the numerical evaluation of such uncertainty.
机译:具有包含摄像机的视觉系统的光学机器设计用于执行非接触式三维测量。由于它们允许进行自动化的多种可能性,并且由于可以实现的测量任务的速度和经济性,它们正越来越广泛地用于工业领域。在尺寸控制中,这些机器引入了灵活性,节省性和可靠性的显着特征。因此,目的是识别此类机器的主要计量特性,并表征从它们获得的测量值的计量可追溯性。目的是使光学机器的每个部分以及整体合格。以前,在国家一级(意大利Italia-Calibration System中的SIT-Sistema di Taratura)或在国际一级(EA-欧洲认可合作),主要计量都没有提供此设备的计量可追溯性。因此,我们开发了一个数学模型,该模型允许评估使用这种设备时的测量不确定度。目的是在尽可能广泛的范围内获得光学机器提供的测量结果的证明。介绍了测试的实验结果以验证所提出的方法。本文提供了使用光学测量机获得的测量结果的不确定度表示的基础,并显示了对此类不确定度进行数值评估的必要要求。

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