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Published in: Structural and Multidisciplinary Optimization 4/2020

13-05-2020 | Research Paper

First-order reliability method based on Harris Hawks Optimization for high-dimensional reliability analysis

Authors: Changting Zhong, Mengfu Wang, Chao Dang, Wenhai Ke, Shengqi Guo

Published in: Structural and Multidisciplinary Optimization | Issue 4/2020

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Abstract

The first-order reliability method (FORM) is a prevalent method in the structural reliability community. However, when solving the high-dimensional problem with a highly nonlinear limit state function, FORM usually encounters non-convergence or divergence. In this study, an improved FORM combining Harris Hawks Optimization (HHO-FORM) is presented for high-dimensional reliability analysis. HHO is a meta-heuristic algorithm mimicking the predatory behavior of Harris hawks, and efficient in finding the global optimum of high-dimensional problems. In HHO-FORM, the reliability index is firstly formulated as the solution of a constrained optimization problem according to the FORM theory. Then, the constraints are handled with the exterior penalty function method. In addition, the optimal reliability index is determined by the Harris Hawks Optimization that accelerates the convergence by the population-based mechanism and the strategy of Levy Flight. The HHO-FORM does not require the derivatives of the limit state functions that reduce the computational burden for high-dimensional problems. So the simplicity of HHO-FORM greatly improves the efficiency in solving high-dimensional reliability problems. The HHO-FORM is firstly tested on three challenging numerical high-dimensional problems and then applied to two high-dimensional engineering problems to verify its performance. Four gradient-based FORM algorithms and four heuristic-based FORM algorithms are also compared with the proposed method. The experimental results demonstrate that HHO-FORM provides good accuracy and efficiency for high-dimensional reliability problems.

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Appendix
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Literature
go back to reference Angelis M, Patelli E, Beer M (2015) Advanced line sampling for efficient robust reliability analysis. Struct Saf 52:170–182 Angelis M, Patelli E, Beer M (2015) Advanced line sampling for efficient robust reliability analysis. Struct Saf 52:170–182
go back to reference Au S K, Beck J L (2001) Estimation of small failure probabilities in high dimensions by subset simulation. Probab Eng Mech 16(4):263–277 Au S K, Beck J L (2001) Estimation of small failure probabilities in high dimensions by subset simulation. Probab Eng Mech 16(4):263–277
go back to reference Binder K, Heermann D, Roelofs L, Mallinckrodt A J, McKay S (1993) Monte Carlo simulation in statistical physics. Comput Phys 7(2):156–157 Binder K, Heermann D, Roelofs L, Mallinckrodt A J, McKay S (1993) Monte Carlo simulation in statistical physics. Comput Phys 7(2):156–157
go back to reference Cheng J (2007) Hybrid genetic algorithms for structural reliability analysis. Comput Struct 85(19-20):1524–1533 Cheng J (2007) Hybrid genetic algorithms for structural reliability analysis. Comput Struct 85(19-20):1524–1533
go back to reference Coello C A C (2002) Theoretical and numerical constraint-handling techniques used with evolutionary algorithms: a survey of the state of the art. Comput Methods Appl Mech Eng 191(11-12):1245–1287MathSciNetMATH Coello C A C (2002) Theoretical and numerical constraint-handling techniques used with evolutionary algorithms: a survey of the state of the art. Comput Methods Appl Mech Eng 191(11-12):1245–1287MathSciNetMATH
go back to reference Cornell C A (1969) A probability-based structural code. J Amer Concret Instit 66(12):974–985 Cornell C A (1969) A probability-based structural code. J Amer Concret Instit 66(12):974–985
go back to reference Dang C, Xu J (2019) Novel algorithm for reconstruction of a distribution by fitting its first-four statistical moments. Appl Math Model 71:505–524MathSciNetMATH Dang C, Xu J (2019) Novel algorithm for reconstruction of a distribution by fitting its first-four statistical moments. Appl Math Model 71:505–524MathSciNetMATH
go back to reference Das Neves Carneiro G, António C C (2019) Global optimal reliability index of implicit composite laminate structures by evolutionary algorithms. Struct Saf 79:54–65 Das Neves Carneiro G, António C C (2019) Global optimal reliability index of implicit composite laminate structures by evolutionary algorithms. Struct Saf 79:54–65
go back to reference Deb K (2000) An efficient constraint handling method for genetic algorithms. Comput Methods Appl Mech Eng 186(2-4):311–338MATH Deb K (2000) An efficient constraint handling method for genetic algorithms. Comput Methods Appl Mech Eng 186(2-4):311–338MATH
go back to reference Dorigo M, Maniezzo V, Colorni A (1996) Ant system: optimization by a colony of cooperating agents. IEEE Trans Syst Man Cybern Part B Cybern 26(1):29–41 Dorigo M, Maniezzo V, Colorni A (1996) Ant system: optimization by a colony of cooperating agents. IEEE Trans Syst Man Cybern Part B Cybern 26(1):29–41
go back to reference Du X, Chen W (2001) A most probable point-based method for efficient uncertainty analysis. J Des Manuf Autom 4(1):47–66 Du X, Chen W (2001) A most probable point-based method for efficient uncertainty analysis. J Des Manuf Autom 4(1):47–66
go back to reference Dubourg V, Sudret B (2014) Meta-model-based importance sampling for reliability sensitivity analysis. Struct Saf 49:27–36 Dubourg V, Sudret B (2014) Meta-model-based importance sampling for reliability sensitivity analysis. Struct Saf 49:27–36
go back to reference Eberhart R, Kennedy J (1995) Particle swarm optimization. IEEE Proc Int Conf Neural Netw 4:1942–1948 Eberhart R, Kennedy J (1995) Particle swarm optimization. IEEE Proc Int Conf Neural Netw 4:1942–1948
go back to reference Elegbede C (2005) Structural reliability assessment based on particles swarm optimization. Struct Saf 27 (2):171–186 Elegbede C (2005) Structural reliability assessment based on particles swarm optimization. Struct Saf 27 (2):171–186
go back to reference Gong J X, Yi P (2011) A robust iterative algorithm for structural reliability analysis. Struct Multidiscip Optim 43:519–527MATH Gong J X, Yi P (2011) A robust iterative algorithm for structural reliability analysis. Struct Multidiscip Optim 43:519–527MATH
go back to reference Hadidi A, Azar B F, Rafiee A (2017) Efficient response surface method for high-dimensional structural reliability analysis. Struct Saf 68:15–27 Hadidi A, Azar B F, Rafiee A (2017) Efficient response surface method for high-dimensional structural reliability analysis. Struct Saf 68:15–27
go back to reference Hao P, Wang Y, Liu C, Wang B, Wu H (2017a) A novel non-probabilistic reliability-based design optimization algorithm using enhanced chaos control method. Comput Methods Appl Mecha Eng 318:689–711MathSciNetMATH Hao P, Wang Y, Liu C, Wang B, Wu H (2017a) A novel non-probabilistic reliability-based design optimization algorithm using enhanced chaos control method. Comput Methods Appl Mecha Eng 318:689–711MathSciNetMATH
go back to reference Hao P, Wang Y, Liu X, Wang B, Li G, Wang L (2017b) An efficient adaptive-loop method for non-probabilistic reliability-based design optimization. Comput Methods Appl Mech Eng 324:689–711MathSciNetMATH Hao P, Wang Y, Liu X, Wang B, Li G, Wang L (2017b) An efficient adaptive-loop method for non-probabilistic reliability-based design optimization. Comput Methods Appl Mech Eng 324:689–711MathSciNetMATH
go back to reference Hao P, Ma R, Wang Y, Feng S, Wang B, Li G, Xing H, Yang F (2019a) An augmented step size adjustment method for the performance measure approach: toward general structural reliability-based design optimization. Structu Safety 80:32–45 Hao P, Ma R, Wang Y, Feng S, Wang B, Li G, Xing H, Yang F (2019a) An augmented step size adjustment method for the performance measure approach: toward general structural reliability-based design optimization. Structu Safety 80:32–45
go back to reference Hao P, Wang Y, Ma R, Liu H, Wang B, Li G (2019b) A new reliability-based design optimization framework using isogeometric analysis. Comput Methods Appl Mech Eng 345:476–501MathSciNetMATH Hao P, Wang Y, Ma R, Liu H, Wang B, Li G (2019b) A new reliability-based design optimization framework using isogeometric analysis. Comput Methods Appl Mech Eng 345:476–501MathSciNetMATH
go back to reference Hasofer A, Lind N (1974) An exact invariant first order reliability format. ASCE J Eng Mech Div 100:111–121 Hasofer A, Lind N (1974) An exact invariant first order reliability format. ASCE J Eng Mech Div 100:111–121
go back to reference Heidari A A, Mirjalili S, Faris H, Aljarah I, Mafarja M, Chen H (2019) Harris hawks optimization: algorithm and applications. Futur Gener Comput Syst 97:849–872 Heidari A A, Mirjalili S, Faris H, Aljarah I, Mafarja M, Chen H (2019) Harris hawks optimization: algorithm and applications. Futur Gener Comput Syst 97:849–872
go back to reference Hu C, Youn B D (2011) Adaptive-sparse polynomial chaos expansion for reliability analysis and design of complex engineering systems. Struct Multidiscip Optim 43(3):419–442MathSciNetMATH Hu C, Youn B D (2011) Adaptive-sparse polynomial chaos expansion for reliability analysis and design of complex engineering systems. Struct Multidiscip Optim 43(3):419–442MathSciNetMATH
go back to reference Hu Z, Du X (2015) First order reliability method for time-variant problems using series expansions. Struct Multidiscip Optim 51(1):1–21MathSciNet Hu Z, Du X (2015) First order reliability method for time-variant problems using series expansions. Struct Multidiscip Optim 51(1):1–21MathSciNet
go back to reference Kaveh A, Zolghadr A (2014a) Democratic PSO for truss layout and size optimization with frequency constraints. Comput Struct 130:10–21 Kaveh A, Zolghadr A (2014a) Democratic PSO for truss layout and size optimization with frequency constraints. Comput Struct 130:10–21
go back to reference Kaveh A, Massoudi M, Bagha M G (2014b) Structural reliability analysis using charged system search algorithm. Iran J Sci Technol Trans Civ Eng 38(C2):439–448 Kaveh A, Massoudi M, Bagha M G (2014b) Structural reliability analysis using charged system search algorithm. Iran J Sci Technol Trans Civ Eng 38(C2):439–448
go back to reference Kaveh A, Ilchi Ghazaan M (2015) Structural reliability assessment utilizing four metaheuristic algorithms. Iran Univ Sci Technol 5(2):205–225 Kaveh A, Ilchi Ghazaan M (2015) Structural reliability assessment utilizing four metaheuristic algorithms. Iran Univ Sci Technol 5(2):205–225
go back to reference Kaveh A, Zolghadr A (2017) Cyclical parthenogenesis algorithm for guided modal strain energy based structural damage detection. Appl Soft Comput 57:250–264 Kaveh A, Zolghadr A (2017) Cyclical parthenogenesis algorithm for guided modal strain energy based structural damage detection. Appl Soft Comput 57:250–264
go back to reference Kaveh A, Zolghadr A (2018) Meta-heuristic methods for optimization of truss structures with vibration frequency constraints. Acta Mech 229(10):3971–3992MathSciNet Kaveh A, Zolghadr A (2018) Meta-heuristic methods for optimization of truss structures with vibration frequency constraints. Acta Mech 229(10):3971–3992MathSciNet
go back to reference Keshtegar B (2016) Chaotic conjugate stability transformation method for structural reliability analysis. Comput Methods Appl Mech Eng 310:866–885MathSciNetMATH Keshtegar B (2016) Chaotic conjugate stability transformation method for structural reliability analysis. Comput Methods Appl Mech Eng 310:866–885MathSciNetMATH
go back to reference Keshtegar B (2017a) Limited conjugate gradient method for structural reliability analysis. Eng Comput 33 (3):621–629 Keshtegar B (2017a) Limited conjugate gradient method for structural reliability analysis. Eng Comput 33 (3):621–629
go back to reference Keshtegar B, Zeng M (2017b) A hybrid relaxed first-order reliability method for efficient structural reliability analysis. Struct Saf 66:84–93 Keshtegar B, Zeng M (2017b) A hybrid relaxed first-order reliability method for efficient structural reliability analysis. Struct Saf 66:84–93
go back to reference Keshtegar B (2018) Conjugate finite-step length method for efficient and robust structural reliability analysis. Struct Eng Mech 65(4):415–422MathSciNet Keshtegar B (2018) Conjugate finite-step length method for efficient and robust structural reliability analysis. Struct Eng Mech 65(4):415–422MathSciNet
go back to reference Lacaze S, Missoum S (2015) Codes: a toolbox for computational design, version 1.0 Lacaze S, Missoum S (2015) Codes: a toolbox for computational design, version 1.0
go back to reference Liu P L, Der Kiureghian A (1991) Optimization algorithms for structural reliability. Struct Saf 9(3):161–177 Liu P L, Der Kiureghian A (1991) Optimization algorithms for structural reliability. Struct Saf 9(3):161–177
go back to reference Melchers RE, Beck AT (2018) Structural reliability analysis and prediction. Wiley, Berlin Melchers RE, Beck AT (2018) Structural reliability analysis and prediction. Wiley, Berlin
go back to reference Meng Z, Li G, Yang D, Zhan L (2017) A new directional stability transformation method of chaos control for first order reliability analysis. Struct Multidiscip Optim 55(2):601–612MathSciNet Meng Z, Li G, Yang D, Zhan L (2017) A new directional stability transformation method of chaos control for first order reliability analysis. Struct Multidiscip Optim 55(2):601–612MathSciNet
go back to reference Meng Z, Pu Y, Zhou H (2018a) Adaptive stability transformation method of chaos control for first order reliability method. Eng Comput 34(4):671–683 Meng Z, Pu Y, Zhou H (2018a) Adaptive stability transformation method of chaos control for first order reliability method. Eng Comput 34(4):671–683
go back to reference Meng Z, Yang D, Zhou H, Wang BP (2018b) Convergence control of single loop approach for reliability-based design optimization. Struct Multidiscip Optim 57(3):1079–1091MathSciNet Meng Z, Yang D, Zhou H, Wang BP (2018b) Convergence control of single loop approach for reliability-based design optimization. Struct Multidiscip Optim 57(3):1079–1091MathSciNet
go back to reference Meng Z, Zhang D, Li G, Yu B (2019a) An importance learning method for non-probabilistic reliability analysis and optimization. Struct Multidiscip Optim 59(4):1255–1271 Meng Z, Zhang D, Li G, Yu B (2019a) An importance learning method for non-probabilistic reliability analysis and optimization. Struct Multidiscip Optim 59(4):1255–1271
go back to reference Meng Z, Zhang Z, Li G, Zhang D (2019b) An active weight learning method for efficient reliability assessment with small failure probability. Struct Multidiscip Optim 61:1157–1170MathSciNet Meng Z, Zhang Z, Li G, Zhang D (2019b) An active weight learning method for efficient reliability assessment with small failure probability. Struct Multidiscip Optim 61:1157–1170MathSciNet
go back to reference Meng Z, Keshtegar B (2019c) Adaptive conjugate single-loop method for efficient reliability-based design and topology optimization. Comput Methods Appl Mech Eng 344:95–119MathSciNetMATH Meng Z, Keshtegar B (2019c) Adaptive conjugate single-loop method for efficient reliability-based design and topology optimization. Comput Methods Appl Mech Eng 344:95–119MathSciNetMATH
go back to reference Meng Z, Zhang Z, Zhou H (2020) A novel experimental data-driven exponential convex model for reliability assessment with uncertain-but-bounded parameters. Appl Math Model 77:773– 787MathSciNetMATH Meng Z, Zhang Z, Zhou H (2020) A novel experimental data-driven exponential convex model for reliability assessment with uncertain-but-bounded parameters. Appl Math Model 77:773– 787MathSciNetMATH
go back to reference Mirjalili S, Mirjalili S M, Lewis A (2014) Grey wolf optimizer. Adv Eng Softw 69:46–61 Mirjalili S, Mirjalili S M, Lewis A (2014) Grey wolf optimizer. Adv Eng Softw 69:46–61
go back to reference Mirjalili S (2016) Dragonfly algorithm: a new meta-heuristic optimization technique for solving single-objective, discrete, and multi-objective problems. Neural Comput Appl 27(4):1053– 1073MathSciNet Mirjalili S (2016) Dragonfly algorithm: a new meta-heuristic optimization technique for solving single-objective, discrete, and multi-objective problems. Neural Comput Appl 27(4):1053– 1073MathSciNet
go back to reference Mirjalili S, Gandomi A H, Mirjalili S Z, Saremi S, Faris H, Mirjalili S M (2017) Salp swarm algorithm: a bio-inspired optimizer for engineering design problems. Adv Eng Softw 114:163–191 Mirjalili S, Gandomi A H, Mirjalili S Z, Saremi S, Faris H, Mirjalili S M (2017) Salp swarm algorithm: a bio-inspired optimizer for engineering design problems. Adv Eng Softw 114:163–191
go back to reference Pan Q, Dias D (2017) An efficient reliability method combining adaptive support vector machine and Monte Carlo simulation. Struct Saf 67:85–95 Pan Q, Dias D (2017) An efficient reliability method combining adaptive support vector machine and Monte Carlo simulation. Struct Saf 67:85–95
go back to reference Pedroso D M (2017) Form reliability analysis using a parallel evolutionary algorithm. Struct Saf 65:84–99 Pedroso D M (2017) Form reliability analysis using a parallel evolutionary algorithm. Struct Saf 65:84–99
go back to reference Rackwitz R, Fiessler B (1978) Structural reliability under combined random load sequences. Comput Struct 9(5):489–494MATH Rackwitz R, Fiessler B (1978) Structural reliability under combined random load sequences. Comput Struct 9(5):489–494MATH
go back to reference Roudak M A, Karamloo M (2019) Establishment of non-negative constraint method as a robust and efficient first-order reliability method. Appl Math Model 68:281–305MathSciNetMATH Roudak M A, Karamloo M (2019) Establishment of non-negative constraint method as a robust and efficient first-order reliability method. Appl Math Model 68:281–305MathSciNetMATH
go back to reference Santosh T, Saraf R, Ghosh A, Kushwaha H (2006) Optimum step length selection rule in modified HL-RF method for structural reliability. Int J Press Vessel Pip 83(10):742–748 Santosh T, Saraf R, Ghosh A, Kushwaha H (2006) Optimum step length selection rule in modified HL-RF method for structural reliability. Int J Press Vessel Pip 83(10):742–748
go back to reference Sawada K, Matsuo A, Shimizu H (2011) Randomized line search techniques in combined GA for discrete sizing optimization of truss structures. Struct Multidiscip Optim 44(3):337–350 Sawada K, Matsuo A, Shimizu H (2011) Randomized line search techniques in combined GA for discrete sizing optimization of truss structures. Struct Multidiscip Optim 44(3):337–350
go back to reference Takahama T, Sakai S (2006) Constrained optimization by the ε constrained differential evolution with gradient-based mutation and feasible elites. In: 2006 IEEE International Conference on Evolutionary Computation. IEEE, pp 1–8 Takahama T, Sakai S (2006) Constrained optimization by the ε constrained differential evolution with gradient-based mutation and feasible elites. In: 2006 IEEE International Conference on Evolutionary Computation. IEEE, pp 1–8
go back to reference Wang G, Ma Z (2017) Hybrid particle swarm optimization for first-order reliability method. Comput Geotech 81:49–58 Wang G, Ma Z (2017) Hybrid particle swarm optimization for first-order reliability method. Comput Geotech 81:49–58
go back to reference Xu J, Dang C (2019a) A novel fractional moments-based maximum entropy method for high-dimensional reliability analysis. Appl Math Model 75:749–768MathSciNetMATH Xu J, Dang C (2019a) A novel fractional moments-based maximum entropy method for high-dimensional reliability analysis. Appl Math Model 75:749–768MathSciNetMATH
go back to reference Xu J, Zhu S (2019b) An efficient approach for high-dimensional structural reliability analysis. Mech Syst Signal Process 122:152–170 Xu J, Zhu S (2019b) An efficient approach for high-dimensional structural reliability analysis. Mech Syst Signal Process 122:152–170
go back to reference Yang D (2010) Chaos control for numerical instability of first order reliability method. Commun Nonlinear Sci Numer Simul 15(10):3131–3141MATH Yang D (2010) Chaos control for numerical instability of first order reliability method. Commun Nonlinear Sci Numer Simul 15(10):3131–3141MATH
go back to reference Yao W, Tang G, Wang N, Chen X (2019) An improved reliability analysis approach based on combined form and beta-spherical importance sampling in critical region. Struct Multidiscip Optim 60:35–58MathSciNet Yao W, Tang G, Wang N, Chen X (2019) An improved reliability analysis approach based on combined form and beta-spherical importance sampling in critical region. Struct Multidiscip Optim 60:35–58MathSciNet
go back to reference Yi P, Zhu Z (2016) Step length adjustment iterative algorithm for inverse reliability analysis. Struct Multidiscip Optim 54(4):1–11MathSciNet Yi P, Zhu Z (2016) Step length adjustment iterative algorithm for inverse reliability analysis. Struct Multidiscip Optim 54(4):1–11MathSciNet
go back to reference Yoo D, Lee I, Cho H (2014) Probabilistic sensitivity analysis for novel second-order reliability method (SORM) using generalized chi-squared distribution. Struct Multidiscip Optim 50(5):787–797MathSciNet Yoo D, Lee I, Cho H (2014) Probabilistic sensitivity analysis for novel second-order reliability method (SORM) using generalized chi-squared distribution. Struct Multidiscip Optim 50(5):787–797MathSciNet
go back to reference Zaeimi M, Ghoddosian A (2018) Structural reliability assessment based on the improved constrained differential evolution algorithm. Period Polytech Civ Eng 62(2):494–507 Zaeimi M, Ghoddosian A (2018) Structural reliability assessment based on the improved constrained differential evolution algorithm. Period Polytech Civ Eng 62(2):494–507
go back to reference Zhang, Y, Kiureghian AD (1995) Two improved algorithms for reliability analysis. Springer, Berlin Zhang, Y, Kiureghian AD (1995) Two improved algorithms for reliability analysis. Springer, Berlin
go back to reference Zhao H, Ru Z, Chang X, Li S (2015) Reliability analysis using chaotic particle swarm optimization. Quality Reliab Eng Int 31(8):1537–1552 Zhao H, Ru Z, Chang X, Li S (2015) Reliability analysis using chaotic particle swarm optimization. Quality Reliab Eng Int 31(8):1537–1552
go back to reference Zhao H, Zhao M, Zhu C (2016) Reliability-based optimization of geotechnical engineering using the artificial bee colony algorithm. KSCE J Civ Eng 20(5):1728–1736 Zhao H, Zhao M, Zhu C (2016) Reliability-based optimization of geotechnical engineering using the artificial bee colony algorithm. KSCE J Civ Eng 20(5):1728–1736
go back to reference Zhao H, Zhu C, Ru Z (2018) Reliability analysis based on artificial bee colony (ABC) and its application in geotechnical engineering. Open Civ Eng J 12(1):96–107 Zhao H, Zhu C, Ru Z (2018) Reliability analysis based on artificial bee colony (ABC) and its application in geotechnical engineering. Open Civ Eng J 12(1):96–107
go back to reference Zhong C, Wang M, Dang C, Ke W (2020) Structural reliability assessment by salp swarm algorithm-based FORM. Qual Reliab Eng In 36:1224–1244 Zhong C, Wang M, Dang C, Ke W (2020) Structural reliability assessment by salp swarm algorithm-based FORM. Qual Reliab Eng In 36:1224–1244
Metadata
Title
First-order reliability method based on Harris Hawks Optimization for high-dimensional reliability analysis
Authors
Changting Zhong
Mengfu Wang
Chao Dang
Wenhai Ke
Shengqi Guo
Publication date
13-05-2020
Publisher
Springer Berlin Heidelberg
Published in
Structural and Multidisciplinary Optimization / Issue 4/2020
Print ISSN: 1615-147X
Electronic ISSN: 1615-1488
DOI
https://doi.org/10.1007/s00158-020-02587-3

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