Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System
A new flexible circumferential drilling system is proposed to drill on the fuselage docking area. To analyze the influence of the circular motion error to the drilling accuracy, the nominal forward kinematic model is derived using Denavit-Hartenberg (D-H) method and this model is further developed t...
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Series: | Mathematical Problems in Engineering |
Online Access: | http://dx.doi.org/10.1155/2015/286796 |
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doaj-9b8f2e7e2c624058ae6000d475db94e52020-11-24T20:59:00ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472015-01-01201510.1155/2015/286796286796Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling SystemQiang Fang0Yu-Chao Li1Shao-Hua Fei2Yong-Wei Han3Ying-Lin Ke4State Key Lab of Fluid Power Transmission and Control, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, ChinaState Key Lab of Fluid Power Transmission and Control, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, ChinaState Key Lab of Fluid Power Transmission and Control, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, ChinaAVIC Xi’an Aircraft Industry Group Limited Company, Xi’an 710089, ChinaState Key Lab of Fluid Power Transmission and Control, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, ChinaA new flexible circumferential drilling system is proposed to drill on the fuselage docking area. To analyze the influence of the circular motion error to the drilling accuracy, the nominal forward kinematic model is derived using Denavit-Hartenberg (D-H) method and this model is further developed to model the kinematic errors caused by circular positioning error and synchronization error using homogeneous transformation matrices (HTM). A laser tracker is utilized to measure the circular motion error of the two measurement points at both sides. A circular motion compensation experiment is implemented according to the calculated positioning error and synchronization error. Experimental results show that the positioning error and synchronization error were reduced by 65.0% and 58.8%, respectively, due to the adopted compensation, and therefore the circular motion accuracy is substantially improved. Finally, position errors of the two measurement points are analyzed to have little influence on the measurement result and the validity of the proposed compensation method is proved.http://dx.doi.org/10.1155/2015/286796 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Qiang Fang Yu-Chao Li Shao-Hua Fei Yong-Wei Han Ying-Lin Ke |
spellingShingle |
Qiang Fang Yu-Chao Li Shao-Hua Fei Yong-Wei Han Ying-Lin Ke Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System Mathematical Problems in Engineering |
author_facet |
Qiang Fang Yu-Chao Li Shao-Hua Fei Yong-Wei Han Ying-Lin Ke |
author_sort |
Qiang Fang |
title |
Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System |
title_short |
Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System |
title_full |
Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System |
title_fullStr |
Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System |
title_full_unstemmed |
Error Modeling and Compensation of Circular Motion on a New Circumferential Drilling System |
title_sort |
error modeling and compensation of circular motion on a new circumferential drilling system |
publisher |
Hindawi Limited |
series |
Mathematical Problems in Engineering |
issn |
1024-123X 1563-5147 |
publishDate |
2015-01-01 |
description |
A new flexible circumferential drilling system is proposed to drill on the fuselage docking area. To analyze the influence of the circular motion error to the drilling accuracy, the nominal forward kinematic model is derived using Denavit-Hartenberg (D-H) method and this model is further developed to model the kinematic errors caused by circular positioning error and synchronization error using homogeneous transformation matrices (HTM). A laser tracker is utilized to measure the circular motion error of the two measurement points at both sides. A circular motion compensation experiment is implemented according to the calculated positioning error and synchronization error. Experimental results show that the positioning error and synchronization error were reduced by 65.0% and 58.8%, respectively, due to the adopted compensation, and therefore the circular motion accuracy is substantially improved. Finally, position errors of the two measurement points are analyzed to have little influence on the measurement result and the validity of the proposed compensation method is proved. |
url |
http://dx.doi.org/10.1155/2015/286796 |
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