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A wireless sensor network-based approach to large-scale dimensional metrology

机译:基于无线传感器网络的大规模尺寸计量方法

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摘要

In many branches of industry, dimensional measurements have become an important part of the production cycle, in order to check product compliance with specifications. This task is not trivial especially when dealing with large-scale dimensional measurements: the bigger the measurement dimensions are, the harder is to achieve high accuracies. Nowadays, the problem can be handled using many metrological systems, based on different technologies (e.g. optical, mechanical, electromagnetic). Each of these systems is more or less adequate, depending upon measuring conditions, user's experience and skill, or other factors such as time, cost, accuracy and portability. This article focuses on a new possible approach to large-scale dimensional metrology based on wireless sensor networks. Advantages and drawbacks of such approach are analysed and deeply discussed. Then, the article briefly presents a recent prototype system - the Mobile Spatial Coordinate-Measuring System (MScMS-II) - which has been developed at the Industrial Metrology and Quality Laboratory of DISPEA - Politecnico di Torino. The system seems to be suitable for performing dimensional measurements of large-size objects (sizes on the order of several meters). Owing to its distributed nature, the system - based on a wireless network of optical devices - is portable, fully scalable with respect to dimensions and shapes and easily adaptable to different working environments. Preliminary results of experimental tests, aimed at evaluating system performance as well as research perspectives for further improvements, are discussed.
机译:在许多行业中,尺寸测量已成为生产周期的重要组成部分,以检查产品是否符合规格。这项任务并非易事,尤其是在处理大规模尺寸测量时:测量尺寸越大,获得高精度的难度就越大。如今,可以使用基于不同技术(例如光学,机械,电磁)的许多计量系统来解决该问题。根据测量条件,用户的经验和技能或其他因素(例如时间,成本,准确性和可移植性),这些系统中的每一个或多或少都足够。本文重点介绍一种基于无线传感器网络的大规模维度量的新方法。分析和深入讨论了这种方法的优缺点。然后,本文简要介绍了最近的原型系统-移动空间坐标测量系统(MScMS-II),该系统已在DISPEA的工业计量和质量实验室-Politecnico di Torino开发。该系统似乎适合于执行大型物体的尺寸测量(尺寸约为几米)。由于其分布式特性,该系统基于光学设备的无线网络,具有便携性,相对于尺寸和形状具有完全可扩展性,并且易于适应不同的工作环境。讨论了旨在评估系统性能的实验测试的初步结果以及进一步改进的研究视角。

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