关注
Younes Khandouch
Younes Khandouch
PhD, Signal Processing and Telecommunications.
在 edu.uiz.ac.ma 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Acoustic scattering from immersed composite cylindrical shells: Existence of zero group velocity circumferential waves
S Agounad, EH Aassif, Y Khandouch, D Décultot, G Maze, A Elhanaoui
Composite Structures 182, 12-24, 2017
212017
Investigation into the bistatic evolution of the acoustic scattering from a cylindrical shell using time-frequency analysis
S Agounad, EH Aassif, Y Khandouch, G Maze, D Décultot
Journal of Sound and Vibration 412, 148-165, 2018
182018
Characterization and prediction of the backscattered form function of an immersed cylindrical shell using hybrid fuzzy clustering and bio-inspired algorithms
S Agounad, EH Aassif, Y Khandouch, G Maze, D Décultot
Ultrasonics 83, 222-235, 2018
152018
Scattering of an acoustic wave by composite cylindrical shells: Influence of inner and outer layer thicknesses on the circumferential waves
S Agounad, EH Aassif, Y Khandouch, D Décultot, G Maze
Composite Structures 187, 439-453, 2018
132018
Experimental study of the bistatic acoustic scattering from cylindrical shell
S Agounad, D Décultot, F Chati, F Léon, Y Khandouch
Mechanical Systems and Signal Processing 186, 109892, 2023
102023
Signal Processing Techniques of Circumferential Waves for Characterization of Bilaminated Cylindrical Shells
S Agounad, EH Aassif, Y Khandouch, A Elhanaoui
Journal of Nondestructive Evaluation 39 (1), 18, 2020
72020
Investigating machine learning and ensemble learning models in groundwater potential mapping in arid region: case study from Tan-Tan water-scarce region, Morocco
A Jari, EM Bachaoui, S Hajaj, A Khaddari, Y Khandouch, A El Harti, ...
Frontiers in Water 5, 1305998, 2023
52023
Analysis of the prediction of a bilayered cylindrical shell’s reduced cutoff frequency with data-driven approaches
S Agounad, EH Aassif, Y Khandouch, A Elhanaoui
Mechanical Systems and Signal Processing 128, 126-140, 2019
52019
Application of spectral and time-frequency analyses to study an acoustic signal backscattered from composite cylindrical shell
S Agounad, A El Houcein, Y Khandouch, D Décultot, G Maze
2017 International Conference on Wireless Technologies, Embedded and …, 2017
52017
A novel approach to estimate the radius ratio of an elastic tube from its form function using soft computing techniques
Y Khandouch, EH Aassif, S Agounad, G Maze
52016
Digital Filtering for Circumferential Wave Separation
S Agounad, Y Khandouch, A Elhanaoui
Distributed Sensing and Intelligent Systems: Proceedings of ICDSIS 2020, 667-676, 2022
12022
Acoustic Scattering from Bi-Layered Cylindrical Shells: Influence of the Layers Thicknesses on the Guided Waves
Y Khandouch, EH Aassif, S Agounad
Acta Acustica united with Acustica 105 (6), 1251-1257, 2019
12019
Search optimal fuzzy model using evolutionary algorithm—Application to predict the form function of the composite cylindrical shell
S Agounad, EH Aassif, Y Khandouch, G Maze, D Décultot
2017 Intelligent Systems and Computer Vision (ISCV), 1-7, 2017
12017
Development of an artificial neural network model for estimating the radius ratio of a one-layered cylindrical shell
Y Khandouch, EH Aassif, S Agounad, G Maze
Applied and Computational Mechanics 14 (2), 163, 2020
2020
Acoustic scattering from cylindrical shell: monostatic versus bistatic configurations
S Agounad, D Décultot, F Chati, F Leon, Y Khandouch, A Elhanaoui
Forum Acusticum, 1863-1866, 2020
2020
Prédiction du rapport des rayons d’un tube élastique par la technique des réseaux de neurones artificiels et l’analyse en composantes principales
Y Khandouch, EH Aassif, S Agounad, G Maze
CFA/VISHNO 2 0 1 6, 2016
2016
Efficacité de la représentation temps-fréquence pour expliquer l’effet de la symétrie dans la propagation des vibrations élastiques autour d’un tube
S Agounad, EH Aassif, Y Khandouch, G Maze
CFA/VISHNO 2 0 1 6, 2016
2016
ANALYSE DES SIGNAUX ACOUSTIQUES DIFFUSES PAR UN TUBE OBTENUS PAR LA METHODE BI-STATIQUE
S Agounad, EH Aassif, Y Khandouch, G Maze, D Décultot
系统目前无法执行此操作,请稍后再试。
文章 1–18