YUKI Algorithm and POD-RBF for Elastostatic and dynamic crack identification

This paper proposes a new metaheuristic algorithm with a search space reduction capability guided by simple formalism. The search population focuses partially on the inside the local search area while the rest explore globally, looking for better search areas. We call the new algorithm by YUKI Algor...

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Vydané v:Journal of computational science Ročník 55; s. 101451
Hlavní autori: Benaissa, Brahim, Hocine, Nourredine Aït, Khatir, Samir, Riahi, Mohamed Kamel, Mirjalili, Seyedali
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier B.V 01.10.2021
Elsevier
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ISSN:1877-7503, 1877-7511
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Abstract This paper proposes a new metaheuristic algorithm with a search space reduction capability guided by simple formalism. The search population focuses partially on the inside the local search area while the rest explore globally, looking for better search areas. We call the new algorithm by YUKI Algoritm (YA) and employ it in a crack identification problem. With the aid of a set of measurements taken on the defected structure, we aim at identifying the crack parameters such as length and orientation. To this end, we use the so-called model reduction technique through Proper orthogonal Decomposition (POD) endorsed with Radial Basic Function (RBF), which helps in predicting (numerically) the measurement at new points (out of the set of sensors) via interpolation. This method is widely used in this context and was proven very effective computational-wise. In our study of the performance of YA, we deal with two cases; Firstly, in the case of the Elastostatic study. And secondly, in the case of dynamic analysis. We compare the performance of the suggested algorithm with the performance of well-known optimization methods, such as Teaching Learning Based Optimization (TLBO), Cuckoo Search (CS), and the Gray Wolf Optimizer (GWO). The results show that YA provides accurate and faster results compared to the mentioned algorithms. •New metaheuristic optimization algorithm.•Inverse problem.•Experimental data-based crack identification.•Elastostatic and dynamic study of cracked plates.
AbstractList This paper proposes a new metaheuristic algorithm with a search space reduction capability guided by simple formalism. The search population focuses partially on the inside the local search area while the rest explore globally, looking for better search areas. We call the new algorithm by YUKI Algoritm (YA) and employ it in a crack identification problem. With the aid of a set of measurements taken on the defected structure, we aim at identifying the crack parameters such as length and orientation. To this end, we use the so-called model reduction technique through Proper orthogonal Decomposition (POD) endorsed with Radial Basic Function (RBF), which helps in predicting (numerically) the measurement at new points (out of the set of sensors) via interpolation. This method is widely used in this context and was proven very effective computational-wise. In our study of the performance of YA, we deal with two cases; Firstly, in the case of the Elastostatic study. And secondly, in the case of dynamic analysis. We compare the performance of the suggested algorithm with the performance of well-known optimization methods, such as Teaching Learning Based Optimization (TLBO), Cuckoo Search (CS), and the Gray Wolf Optimizer (GWO). The results show that YA provides accurate and faster results compared to the mentioned algorithms. •New metaheuristic optimization algorithm.•Inverse problem.•Experimental data-based crack identification.•Elastostatic and dynamic study of cracked plates.
ArticleNumber 101451
Author Hocine, Nourredine Aït
Khatir, Samir
Riahi, Mohamed Kamel
Mirjalili, Seyedali
Benaissa, Brahim
Author_xml – sequence: 1
  givenname: Brahim
  orcidid: 0000-0002-9472-9331
  surname: Benaissa
  fullname: Benaissa, Brahim
  email: benaissa@toyota-ti.ac.jp
  organization: Toyota Technological Institute, Department of Mechanical Systems Engineering, Design Engineering Lab, 468-8511 Aichi, Nagoya, Tempaku Ward, Hisakata, 2 Chome-12-1, Japan
– sequence: 2
  givenname: Nourredine Aït
  surname: Hocine
  fullname: Hocine, Nourredine Aït
  organization: INSA CVL, Univ. Tours, Univ. Orléans, LaMé, 3 rue de la Chocolaterie, CS 23410, 41034, Blois, Cedex, France
– sequence: 3
  givenname: Samir
  surname: Khatir
  fullname: Khatir, Samir
  organization: Soete Laboratory, Faculty of Engineering and Architecture, Ghent University, Technologiepark Zwijnaarde 903, B-9052, Zwijnaarde, Belgium
– sequence: 4
  givenname: Mohamed Kamel
  orcidid: 0000-0001-7987-1391
  surname: Riahi
  fullname: Riahi, Mohamed Kamel
  organization: Department of Mathematics, Khalifa University of Sciences and Technology, P.O. Box 127788, Abu Dhabi, United Arab Emirates
– sequence: 5
  givenname: Seyedali
  surname: Mirjalili
  fullname: Mirjalili, Seyedali
  organization: Centre for Artificial Intelligence Research and Optimisation, Torrens University Australia, Fortitude Valley, Brisbane, 4006, QLD, Australia
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Keywords Crack identification
Static and dynamic analysis
Yuki Algorithm
POD-RBF
Inverse problem
Language English
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Snippet This paper proposes a new metaheuristic algorithm with a search space reduction capability guided by simple formalism. The search population focuses partially...
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StartPage 101451
SubjectTerms Crack identification
Engineering Sciences
Inverse problem
POD-RBF
Static and dynamic analysis
Yuki Algorithm
Title YUKI Algorithm and POD-RBF for Elastostatic and dynamic crack identification
URI https://dx.doi.org/10.1016/j.jocs.2021.101451
https://hal.science/hal-03605264
Volume 55
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