A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly

This paper presents the design and the characterization of a portable laser triangulation measurement system for measuring gap and flush in the car body assembly process. Targeting Human in the Loop (HILT) operations in the manufacturing sector, and in line with the vision of human empowerment with...

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Main Authors: Elisa Minnetti, Paolo Chiariotti, Nicola Paone, Gisela Garcia, Helder Vicente, Luca Violini, Paolo Castellini
Format: Article
Language:English
Published: MDPI AG 2020-06-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/11/3300
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spelling doaj-94ffaf7ebb164edbbe4f842aa311c8ea2020-11-25T03:24:11ZengMDPI AGSensors1424-82202020-06-01203300330010.3390/s20113300A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body AssemblyElisa Minnetti0Paolo Chiariotti1Nicola Paone2Gisela Garcia3Helder Vicente4Luca Violini5Paolo Castellini6Department of Industrial Engineering and Mathematical Sciences, Università Politecnica delle Marche, Via Brecce Bianche, 6013 Ancona, ItalyDepartment of Industrial Engineering and Mathematical Sciences, Università Politecnica delle Marche, Via Brecce Bianche, 6013 Ancona, ItalyDepartment of Industrial Engineering and Mathematical Sciences, Università Politecnica delle Marche, Via Brecce Bianche, 6013 Ancona, ItalyVolkswagen Autoeuropa, 2954-024 Q.ta do Anjo, PortugalVolkswagen Autoeuropa, 2954-024 Q.ta do Anjo, PortugalDepartment of Industrial Engineering and Mathematical Sciences, Università Politecnica delle Marche, Via Brecce Bianche, 6013 Ancona, ItalyDepartment of Industrial Engineering and Mathematical Sciences, Università Politecnica delle Marche, Via Brecce Bianche, 6013 Ancona, ItalyThis paper presents the design and the characterization of a portable laser triangulation measurement system for measuring gap and flush in the car body assembly process. Targeting Human in the Loop (HILT) operations in the manufacturing sector, and in line with the vision of human empowerment with Industry 4.0 technologies, the instrument embeds features to ease operators’ activity and compensate possible misuse that could affect the robustness and the quality of data acquired. The device is based on a smartphone integrated with a miniaturized laser triangulation system installed in a cover. The device embodies additional sensors and control systems in order to guarantee operators’ safety (switching on and off the laser line based on specific conditions), support operators during the measurement execution task, and optimize the image acquisition process for minimizing the uncertainty associated to the measurement. The smartphone performs on-board processing and allows Wi-Fi communication with the plant IT infrastructure. Compliance to Industry 4.0 requirements is guaranteed using OPC-UA (Open Platform Communications—Unified Architecture) communication protocol enabling the exchange of live data with the plant middleware. The smartphone provides also an advanced high-resolution color display and well proven and ergonomic human–machine interfaces, which have been fully exploited in the design. The paper introduces the system optical layout and then presents the algorithms implemented to realize the gap and flush measurement. The paper finally presents the calibration of the instrument and estimates its calibration uncertainty in laboratory conditions. Then it discusses how performance decays when the operator handles the instrument on a reference car body. Finally, it shows the analysis of uncertainty when the device is used on real car bodies of different colors in a production line. It is observed that the measurement uncertainty of the whole measurement chain (measurand + instrument + operator + uncontrolled environmental conditions) is larger than the instrument calibration uncertainty because the measurement process is affected by the operator and the variable conditions of the production line.https://www.mdpi.com/1424-8220/20/11/3300gap and flush measurementlaser triangulationsmartphoneindustrial internet of thingsin-line quality controlcar-body assembly line
collection DOAJ
language English
format Article
sources DOAJ
author Elisa Minnetti
Paolo Chiariotti
Nicola Paone
Gisela Garcia
Helder Vicente
Luca Violini
Paolo Castellini
spellingShingle Elisa Minnetti
Paolo Chiariotti
Nicola Paone
Gisela Garcia
Helder Vicente
Luca Violini
Paolo Castellini
A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
Sensors
gap and flush measurement
laser triangulation
smartphone
industrial internet of things
in-line quality control
car-body assembly line
author_facet Elisa Minnetti
Paolo Chiariotti
Nicola Paone
Gisela Garcia
Helder Vicente
Luca Violini
Paolo Castellini
author_sort Elisa Minnetti
title A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
title_short A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
title_full A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
title_fullStr A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
title_full_unstemmed A Smartphone Integrated Hand-Held Gap and Flush Measurement System for in Line Quality Control of Car Body Assembly
title_sort smartphone integrated hand-held gap and flush measurement system for in line quality control of car body assembly
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-06-01
description This paper presents the design and the characterization of a portable laser triangulation measurement system for measuring gap and flush in the car body assembly process. Targeting Human in the Loop (HILT) operations in the manufacturing sector, and in line with the vision of human empowerment with Industry 4.0 technologies, the instrument embeds features to ease operators’ activity and compensate possible misuse that could affect the robustness and the quality of data acquired. The device is based on a smartphone integrated with a miniaturized laser triangulation system installed in a cover. The device embodies additional sensors and control systems in order to guarantee operators’ safety (switching on and off the laser line based on specific conditions), support operators during the measurement execution task, and optimize the image acquisition process for minimizing the uncertainty associated to the measurement. The smartphone performs on-board processing and allows Wi-Fi communication with the plant IT infrastructure. Compliance to Industry 4.0 requirements is guaranteed using OPC-UA (Open Platform Communications—Unified Architecture) communication protocol enabling the exchange of live data with the plant middleware. The smartphone provides also an advanced high-resolution color display and well proven and ergonomic human–machine interfaces, which have been fully exploited in the design. The paper introduces the system optical layout and then presents the algorithms implemented to realize the gap and flush measurement. The paper finally presents the calibration of the instrument and estimates its calibration uncertainty in laboratory conditions. Then it discusses how performance decays when the operator handles the instrument on a reference car body. Finally, it shows the analysis of uncertainty when the device is used on real car bodies of different colors in a production line. It is observed that the measurement uncertainty of the whole measurement chain (measurand + instrument + operator + uncontrolled environmental conditions) is larger than the instrument calibration uncertainty because the measurement process is affected by the operator and the variable conditions of the production line.
topic gap and flush measurement
laser triangulation
smartphone
industrial internet of things
in-line quality control
car-body assembly line
url https://www.mdpi.com/1424-8220/20/11/3300
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