Elliptical ring distribution probability-based damage imaging method for complex aircraft structures

In engineering applications, the robustness and effectiveness of damage diagnostic imaging for guided wave-based structural health monitoring could be affected by the complexity of structures. In this study, an elliptical ring distribution probability-based diagnostic imaging algorithm is proposed t...

Full description

Bibliographic Details
Main Authors: Guoqiang Liu, Yingchun Xiao, Hua Zhang, Gexue Ren
Format: Article
Language:English
Published: JVE International 2017-11-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/17337
id doaj-954345b8697b4e658f327d47a9eb1a87
record_format Article
spelling doaj-954345b8697b4e658f327d47a9eb1a872020-11-25T00:45:16ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602017-11-011974936495210.21595/jve.2017.1733717337Elliptical ring distribution probability-based damage imaging method for complex aircraft structuresGuoqiang Liu0Yingchun Xiao1Hua Zhang2Gexue Ren3School of Aerospace Engineering, Tsinghua University, Beijing, 100084, ChinaAircraft Strength Research Institute of China, Xi’an, 710065, ChinaAircraft Strength Research Institute of China, Xi’an, 710065, ChinaSchool of Aerospace Engineering, Tsinghua University, Beijing, 100084, ChinaIn engineering applications, the robustness and effectiveness of damage diagnostic imaging for guided wave-based structural health monitoring could be affected by the complexity of structures. In this study, an elliptical ring distribution probability-based diagnostic imaging algorithm is proposed to mitigate this effect using the estimated wave velocity and damage index. This algorithm improves the ability of damage localization by modifying the defect distribution probability of probability-based diagnostic imaging. The elliptical ring distribution probability of the presence of defect is used for each sensing path in the algorithm. The width of the elliptical ring distribution probability is determined by the range of estimated wave velocity. The amplitude of the elliptical ring distribution probability is determined by the damage index. The damage location is determined by the cross region of different elliptical rings for different sensing paths. The capability of the algorithm is validated by identifying damages at different locations on a complex composite fuselage panel. The results show that the proposed algorithm can identify a single damage accurately and it can identify multiple damages effectively as well.https://www.jvejournals.com/article/17337structural health monitoringguided wavesdamage identificationprobability-based diagnostic imaging
collection DOAJ
language English
format Article
sources DOAJ
author Guoqiang Liu
Yingchun Xiao
Hua Zhang
Gexue Ren
spellingShingle Guoqiang Liu
Yingchun Xiao
Hua Zhang
Gexue Ren
Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
Journal of Vibroengineering
structural health monitoring
guided waves
damage identification
probability-based diagnostic imaging
author_facet Guoqiang Liu
Yingchun Xiao
Hua Zhang
Gexue Ren
author_sort Guoqiang Liu
title Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
title_short Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
title_full Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
title_fullStr Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
title_full_unstemmed Elliptical ring distribution probability-based damage imaging method for complex aircraft structures
title_sort elliptical ring distribution probability-based damage imaging method for complex aircraft structures
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2017-11-01
description In engineering applications, the robustness and effectiveness of damage diagnostic imaging for guided wave-based structural health monitoring could be affected by the complexity of structures. In this study, an elliptical ring distribution probability-based diagnostic imaging algorithm is proposed to mitigate this effect using the estimated wave velocity and damage index. This algorithm improves the ability of damage localization by modifying the defect distribution probability of probability-based diagnostic imaging. The elliptical ring distribution probability of the presence of defect is used for each sensing path in the algorithm. The width of the elliptical ring distribution probability is determined by the range of estimated wave velocity. The amplitude of the elliptical ring distribution probability is determined by the damage index. The damage location is determined by the cross region of different elliptical rings for different sensing paths. The capability of the algorithm is validated by identifying damages at different locations on a complex composite fuselage panel. The results show that the proposed algorithm can identify a single damage accurately and it can identify multiple damages effectively as well.
topic structural health monitoring
guided waves
damage identification
probability-based diagnostic imaging
url https://www.jvejournals.com/article/17337
work_keys_str_mv AT guoqiangliu ellipticalringdistributionprobabilitybaseddamageimagingmethodforcomplexaircraftstructures
AT yingchunxiao ellipticalringdistributionprobabilitybaseddamageimagingmethodforcomplexaircraftstructures
AT huazhang ellipticalringdistributionprobabilitybaseddamageimagingmethodforcomplexaircraftstructures
AT gexueren ellipticalringdistributionprobabilitybaseddamageimagingmethodforcomplexaircraftstructures
_version_ 1725271117824786432