An efficient adaptive database sampling strategy with applications to eddy current signals

被引:9
|
作者
Miorelli, R. [1 ]
Artusi, X. [1 ]
Reboud, C. [1 ]
机构
[1] CEA, Dept Imagerie Simulat Controle, LIST, F-91191 Gif Sur Yvette, France
关键词
Database; Metamodel; Output space filling design; Database adaptive sampling; Augmented radial basis function; Delaunay mesh; Eddy current; Non destructive testing; INTERPOLATION; ALGORITHM; DESIGN;
D O I
10.1016/j.simpat.2017.10.003
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Computer simulations are widely used in engineering domains to model complex scenarios and extract meaningful information or improve the understanding of a given problem. Common purposes of simulation studies are inversion, optimization, sensitivity analysis and evaluation of performance. In such contexts, it is often convenient to replace the time consuming forward solver by a metamodel acting as a fast and accurate substitute in a restricted range of input parameters. Focused on applications in the field of Electromagnetic-Non Destructive Testing (E-NDT), this paper proposes an approach to design robust meta-models, based on adaptive databases of simulation results in order to ensure their accuracy. They can then be used as real-time emulators of the physical model and considerably speed up time consuming studies like estimation of probability of detection, defect characterization or sensitivity analysis. The database and metamodel generation problem is first addressed with a meshless approach based on Augmented Radial Basis Function (A-RBF) algorithm. Then, its performance is compared with that of a more standard approach exploiting a n-dimensional Delaunay mesh. Both approaches rely on an adaptive generation technique known in the literature as Output Space Filling (OSF). Performance in terms of computational time and results accuracy of both methods are finally evaluated and compared in the case of a specific application: the simulation of Eddy Current Testing (ECT) inspection problems. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:75 / 88
页数:14
相关论文
共 50 条
  • [31] Inversion of eddy-current testing signals using a fast interpolation over an optimal defect-database
    Bilicz, Sandor
    ELECTROMAGNETIC NONDESTRUCTIVE EVALUATION (XVII), 2014, 39 : 315 - 322
  • [32] Eddy current array probe applications
    Matulewicz, WR
    ASNT FALL CONFERENCE AND QUALITY TESTING SHOW PAPER SUMMARIES, 1999, : 74 - 76
  • [33] Adaptive sampling for selectivity estimation in spatial database
    Xu, D
    Ma, XJ
    Xie, KQ
    Han, L
    Zhang, HB
    Pu, W
    Zhang, HT
    IGARSS 2005: IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM, VOLS 1-8, PROCEEDINGS, 2005, : 924 - 927
  • [34] Pulsed eddy current thermography and applications
    Tian G.Y.
    Wilson J.
    Cheng L.
    Almond D.P.
    Kostson E.
    Weekes B.
    Lecture Notes in Electrical Engineering, 2011, 96 : 205 - 231
  • [35] EFFICIENT MODEL CHOICE AND PARAMETER ESTIMATION BY USING NESTED SAMPLING APPLIED IN EDDY-CURRENT TESTING
    Cai, C.
    Rodet, T.
    Lambert, M.
    2015 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH, AND SIGNAL PROCESSING (ICASSP), 2015, : 4165 - 4169
  • [36] Study on adaptive control for eddy current dynamometer
    Ge, Anlin
    Li, Yongjun
    Niu, Mingkui
    Lei, Yulong
    Qiche Gongcheng/Automotive Engineering, 2000, 22 (03): : 210 - 213
  • [37] Efficient Testing of Database Applications
    Baig, Mirza Mahmood
    Khan, Ansar Ahmad
    INTERNATIONAL JOURNAL OF COMPUTER SCIENCE AND NETWORK SECURITY, 2009, 9 (04): : 230 - 236
  • [38] CALIBRATION OF EDDY-CURRENT SYSTEMS WITH SIMULATED SIGNALS
    CROWE, JC
    MATERIALS EVALUATION, 1977, 35 (09) : 59 - 64
  • [39] Influence of Conductive Pollution on Eddy Current Sensor Signals
    A. Abdou
    T. Bouchala
    N. Benhadda
    B. Abdelhadi
    A. Benoudjit
    Russian Journal of Nondestructive Testing, 2018, 54 : 192 - 202
  • [40] CALIBRATION OF EDDY-CURRENT SYSTEMS WITH SIMULATED SIGNALS
    CROWE, JC
    MATERIALS EVALUATION, 1976, 34 (09) : P13 - P13