Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor

In the development of the multi-dimensional force sensor, dimension coupling is the ubiquitous factor restricting the improvement of the measurement accuracy. To effectively reduce the influence of dimension coupling on the parallel multi-dimensional force sensor, a novel parallel three-dimensional...

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Main Authors: Yanzhi Zhao, Leihao Jiao, Dacheng Weng, Dan Zhang, Rencheng Zheng
Format: Article
Language:English
Published: MDPI AG 2016-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/16/9/1506
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spelling doaj-58d820220c8643e6a7b2d4ae835ea5892020-11-24T21:47:47ZengMDPI AGSensors1424-82202016-09-01169150610.3390/s16091506s16091506Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force SensorYanzhi Zhao0Leihao Jiao1Dacheng Weng2Dan Zhang3Rencheng Zheng4Key Laboratory of Parallel Robot and Mechatronic System of Hebei Province, Yanshan University, Qinhuangdao 066004, ChinaKey Laboratory of Parallel Robot and Mechatronic System of Hebei Province, Yanshan University, Qinhuangdao 066004, ChinaKey Laboratory of Parallel Robot and Mechatronic System of Hebei Province, Yanshan University, Qinhuangdao 066004, ChinaDepartment of Mechanical Engineering, Lassonde School of Engineering, York University, 4700 Keele Street, Toronto, ON M3J 1P3, CanadaInstitute of Industrial Science, The University of Tokyo, Tokyo 153-8505, JapanIn the development of the multi-dimensional force sensor, dimension coupling is the ubiquitous factor restricting the improvement of the measurement accuracy. To effectively reduce the influence of dimension coupling on the parallel multi-dimensional force sensor, a novel parallel three-dimensional force sensor is proposed using a mechanical decoupling principle, and the influence of the friction on dimension coupling is effectively reduced by making the friction rolling instead of sliding friction. In this paper, the mathematical model is established by combining with the structure model of the parallel three-dimensional force sensor, and the modeling and analysis of mechanical decoupling are carried out. The coupling degree (ε) of the designed sensor is defined and calculated, and the calculation results show that the mechanical decoupling parallel structure of the sensor possesses good decoupling performance. A prototype of the parallel three-dimensional force sensor was developed, and FEM analysis was carried out. The load calibration and data acquisition experiment system are built, and then calibration experiments were done. According to the calibration experiments, the measurement accuracy is less than 2.86% and the coupling accuracy is less than 3.02%. The experimental results show that the sensor system possesses high measuring accuracy, which provides a basis for the applied research of the parallel multi-dimensional force sensor.http://www.mdpi.com/1424-8220/16/9/1506three-dimensional force sensormechanical decouplingparallel structurecalibration experiment
collection DOAJ
language English
format Article
sources DOAJ
author Yanzhi Zhao
Leihao Jiao
Dacheng Weng
Dan Zhang
Rencheng Zheng
spellingShingle Yanzhi Zhao
Leihao Jiao
Dacheng Weng
Dan Zhang
Rencheng Zheng
Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
Sensors
three-dimensional force sensor
mechanical decoupling
parallel structure
calibration experiment
author_facet Yanzhi Zhao
Leihao Jiao
Dacheng Weng
Dan Zhang
Rencheng Zheng
author_sort Yanzhi Zhao
title Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
title_short Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
title_full Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
title_fullStr Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
title_full_unstemmed Decoupling Principle Analysis and Development of a Parallel Three-Dimensional Force Sensor
title_sort decoupling principle analysis and development of a parallel three-dimensional force sensor
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2016-09-01
description In the development of the multi-dimensional force sensor, dimension coupling is the ubiquitous factor restricting the improvement of the measurement accuracy. To effectively reduce the influence of dimension coupling on the parallel multi-dimensional force sensor, a novel parallel three-dimensional force sensor is proposed using a mechanical decoupling principle, and the influence of the friction on dimension coupling is effectively reduced by making the friction rolling instead of sliding friction. In this paper, the mathematical model is established by combining with the structure model of the parallel three-dimensional force sensor, and the modeling and analysis of mechanical decoupling are carried out. The coupling degree (ε) of the designed sensor is defined and calculated, and the calculation results show that the mechanical decoupling parallel structure of the sensor possesses good decoupling performance. A prototype of the parallel three-dimensional force sensor was developed, and FEM analysis was carried out. The load calibration and data acquisition experiment system are built, and then calibration experiments were done. According to the calibration experiments, the measurement accuracy is less than 2.86% and the coupling accuracy is less than 3.02%. The experimental results show that the sensor system possesses high measuring accuracy, which provides a basis for the applied research of the parallel multi-dimensional force sensor.
topic three-dimensional force sensor
mechanical decoupling
parallel structure
calibration experiment
url http://www.mdpi.com/1424-8220/16/9/1506
work_keys_str_mv AT yanzhizhao decouplingprincipleanalysisanddevelopmentofaparallelthreedimensionalforcesensor
AT leihaojiao decouplingprincipleanalysisanddevelopmentofaparallelthreedimensionalforcesensor
AT dachengweng decouplingprincipleanalysisanddevelopmentofaparallelthreedimensionalforcesensor
AT danzhang decouplingprincipleanalysisanddevelopmentofaparallelthreedimensionalforcesensor
AT renchengzheng decouplingprincipleanalysisanddevelopmentofaparallelthreedimensionalforcesensor
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