A Semi-Supervised Based K-Means Algorithm for Optimal Guided Waves Structural Health Monitoring: A Case Study

被引:33
作者
Bouzenad, Abd Ennour [1 ]
El Mountassir, Mahjoub [1 ]
Yaacoubi, Slah [1 ]
Dahmene, Fethi [1 ]
Koabaz, Mahmoud [2 ]
Buchheit, Lilian [1 ]
Ke, Weina [1 ]
机构
[1] Inst Soudure, Plateforme RDI CND, 4 Bvd Henri Becquerel, F-57970 Yutz, France
[2] Lebanese Univ, Lab Rammal Hassan Rammal, Res Team PhyToxE, Fac Sci, Nabatieh 00961, Lebanon
关键词
structural health monitoring; guided waves; pipelines; k-means clustering; alarm threshold; DAMAGE DETECTION; SPARSE REPRESENTATION; PIPELINES; PIPES;
D O I
10.3390/inventions4010017
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper concerns the health monitoring of pipelines and tubes. It proposes the k-means clustering algorithm as a simple tool to monitor the integrity of a structure (i.e., detecting defects and assessing their growth). The k-means algorithm is applied on data collected experimentally, by means of an ultrasonic guided waves technique, from healthy and damaged tubes. Damage was created by attaching magnets to a tube. The number of magnets was increased progressively to simulate an increase in the size of the defect and also, a change in its shape. To test the performance of the proposed method for damage detection, a statistical population was created for the healthy state and for each damage step. This was done by adding white Gaussian noise to each acquired signal. To optimize the number of clusters, many algorithms were run, and their results were compared. Then, a semi-supervised based method was proposed to determine an alarm threshold, triggered when a defect becomes critical.
引用
收藏
页数:18
相关论文
共 31 条
[1]   Baseline-free guided wave damage detection with surrogate data and dictionary learning [J].
Alguri, K. Supreet ;
Melville, Joseph ;
Harley, Joel B. .
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2018, 143 (06) :3807-3818
[2]  
Bholowalia P., 2014, Int. J. Comput. Appl, V105, P17, DOI [DOI 10.5120/18405-9674, 10.4236/jdaip.2020.83010, DOI 10.4236/JDAIP.2020.83010]
[3]  
Black S., 2008, STRUCTURAL HLTH MONI
[4]  
Caliski T., 1974, Commun Stat Simul Comput, V3, P1, DOI [10.1080/03610927408827101, DOI 10.1080/03610927408827101]
[5]   Ultrasonic guided waves for health monitoring of high-pressure composite tanks [J].
Castaings, M. ;
Hosten, B. .
NDT & E INTERNATIONAL, 2008, 41 (08) :648-655
[6]  
Cawley P, 2003, MATER EVAL, V61, P66
[7]   Efficient temperature compensation strategies for guided wave structural health monitoring [J].
Croxford, Anthony J. ;
Moll, Jochen ;
Wilcox, Paul D. ;
Michaels, Jennifer E. .
ULTRASONICS, 2010, 50 (4-5) :517-528
[8]  
D.N.Alleyne, 2002, [Journal of the Korean Society for Nondestructive Testing, 비파괴검사학회지], V22, P589
[9]   CLUSTER SEPARATION MEASURE [J].
DAVIES, DL ;
BOULDIN, DW .
IEEE TRANSACTIONS ON PATTERN ANALYSIS AND MACHINE INTELLIGENCE, 1979, 1 (02) :224-227
[10]   Damage localization in metallic plate structures using edge-reflected lamb waves [J].
Ebrahimkhanlou, A. ;
Dubuc, B. ;
Salamone, S. .
SMART MATERIALS AND STRUCTURES, 2016, 25 (08)