Non-probabilistic Integrated Reliability Analysis of Structures with Fuzzy Interval Uncertainties using the Adaptive GPR-RS Method

被引:0
|
作者
Minghui Liu
Xiaoling Wang
Xiaobin Zhu
Wenlong Chen
Xiao Li
机构
[1] Tianjin University,State Key Laboratory of Hydraulic Engineering Simulation and Safety
来源
关键词
structural integrated reliability; interval variable; non-probabilistic reliability; fuzzy set theory adaptive Gaussian process regression; response surface method;
D O I
暂无
中图分类号
学科分类号
摘要
Due to its weak dependence on the quantity of variable samples, the non-probabilistic reliability analysis method based on the convex set model is applicable to practical problems in structural engineering with inherent uncertainties. However, when dealing with the black-box limit-state function issues in practical complex structural engineering, the traditional quadratic polynomial response surface (QP-RS) method has the problem of insufficient precision in approximating a highly nonlinear function. Meanwhile, fixing the limits of interval variables is trickier in case of scant samples and meager statistical information. To remedy the above deficiencies, this paper introduces a reasonable integrated reliability analysis approach. First, an adaptive Gaussian process regression response surface (GPR-RS) method that dynamically improves the fitted accuracy near the design point of the black-box limit-state function is formulated. Furthermore, the integrated reliability index with consideration of fuzzy interval uncertainties is presented. Three validation and two application examples are employed, which have justified the approach as a more reasonable assessor of practical complex structural reliability with safer results.
引用
收藏
页码:3978 / 3992
页数:14
相关论文
共 50 条
  • [1] Non-probabilistic Integrated Reliability Analysis of Structures with Fuzzy Interval Uncertainties using the Adaptive GPR-RS Method
    Liu, Minghui
    Wang, Xiaoling
    Zhu, Xiaobin
    Chen, Wenlong
    Li, Xiao
    [J]. KSCE JOURNAL OF CIVIL ENGINEERING, 2019, 23 (09) : 3978 - 3992
  • [2] Non-probabilistic fuzzy reliability analysis of slope stability based on interval interconnection method
    Cao, Wengui
    Zhang, Yongjie
    [J]. Tumu Gongcheng Xuebao/China Civil Engineering Journal, 2007, 40 (11): : 64 - 69
  • [3] Interval Perturbation Method to Structural Non-probabilistic Reliability Analysis
    Sun, Zuozhen
    Meng, Guangwei
    Li, Feng
    Zhou, Liming
    [J]. ADVANCES IN MANUFACTURING SCIENCE AND ENGINEERING, PTS 1-4, 2013, 712-715 : 1527 - 1530
  • [4] A non-probabilistic reliability analysis method with the fuzzy failure criterion
    Yao, He
    Zhao, Cunbao
    Chen, Pengyu
    Zhang, Yue
    Zhao, Shengnan
    Bu, Jianqing
    [J]. STRUCTURES, 2023, 58
  • [5] Coupled fuzzy-interval model and method for structural response analysis with non-probabilistic hybrid uncertainties
    Wang, Chong
    Matthies, Hermann G.
    [J]. FUZZY SETS AND SYSTEMS, 2021, 417 : 171 - 189
  • [6] Non-probabilistic fuzzy reliability analysis of pile foundation stability by interval theory
    Cao Wen-gui
    Zhang Yong-jie
    Zhao Ming-hua
    [J]. JOURNAL OF CENTRAL SOUTH UNIVERSITY OF TECHNOLOGY, 2007, 14 (06): : 864 - 869
  • [7] Non-probabilistic fuzzy reliability analysis of pile foundation stability by interval theory
    Wen-gui Cao
    Yong-jie Zhang
    Ming-hua Zhao
    [J]. Journal of Central South University of Technology, 2007, 14 : 864 - 869
  • [8] Non-probabilistic fuzzy reliability analysis of pile foundation stability by interval theory
    曹文贵
    张永杰
    赵明华
    [J]. Journal of Central South University, 2007, (06) : 864 - 869
  • [9] Interval analysis method of fatigue and fracture reliability for offshore structures based on probabilistic and non-probabilistic hybrid model
    Xue, H. X.
    Tang, W. Y.
    Zhang, S. K.
    Yuan, M.
    [J]. PROCEEDINGS OF THE SIXTEENTH (2006) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 4, 2006, : 370 - +
  • [10] A new method for structural non-probabilistic reliability analysis based on interval analysis
    Gou, Xing-wang
    Li, Ai-jun
    Luo, La-quan
    Wang, Chang-qing
    [J]. MULTIDISCIPLINE MODELING IN MATERIALS AND STRUCTURES, 2016, 12 (01) : 73 - 79