A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION

Solving systems of nonlinear equations is a difficult problem in numerical computation. Probably the best known and most widely used algorithm to solve a system of nonlinear equations is Newton-Raphson method. A significant shortcoming of this method becomes apparent when attempting to solve problem...

Full description

Bibliographic Details
Main Authors: Iman Mansouri, Ali Shahri, Hassan Zahedifar
Format: Article
Language:English
Published: IIUM Press, International Islamic University Malaysia 2016-11-01
Series:International Islamic University Malaysia Engineering Journal
Online Access:http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/581
id doaj-69464b494ffa4d0591a55cb1b555d97f
record_format Article
spelling doaj-69464b494ffa4d0591a55cb1b555d97f2020-11-25T03:26:27ZengIIUM Press, International Islamic University MalaysiaInternational Islamic University Malaysia Engineering Journal1511-788X2289-78602016-11-0117210.31436/iiumej.v17i2.581A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATIONIman Mansouri0Ali Shahri1Hassan Zahedifar2Dept. of Civil Engineering, Birjand University of TechnologyShahid Bahonar University of Kerman, Kerman, IranShahid Bahonar University of Kerman, Kerman, IranSolving systems of nonlinear equations is a difficult problem in numerical computation. Probably the best known and most widely used algorithm to solve a system of nonlinear equations is Newton-Raphson method. A significant shortcoming of this method becomes apparent when attempting to solve problems with limit points. Once a fixed load is defined in the first step, there is no way to modify the load vector should a limit point occur within the increment. To overcome this defect, displacement control methods for passing limit points can be used. In displacement control method, the load ratio in the first step of an increment is defined so that a particular key displacement component will change only by a prescribed amount. In this paper the load ratio is obtained using particle swarm optimization (PSO) algorithm so that the complex behavior of structures can be followed, automatically. Design variable is load ratio and its unbalanced force is also considered as objective function in optimization process. Numerical results are performed under geometrical nonlinear analysis, elastic post-buckling analysis and inelastic post-buckling analysis. The efficiency and accuracy of proposed method are demonstrated by solving these examples.    http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/581
collection DOAJ
language English
format Article
sources DOAJ
author Iman Mansouri
Ali Shahri
Hassan Zahedifar
spellingShingle Iman Mansouri
Ali Shahri
Hassan Zahedifar
A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
International Islamic University Malaysia Engineering Journal
author_facet Iman Mansouri
Ali Shahri
Hassan Zahedifar
author_sort Iman Mansouri
title A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
title_short A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
title_full A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
title_fullStr A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
title_full_unstemmed A NEW ALGORITHM IN NONLINEAR ANALYSIS OF STRUCTURES USING PARTICLE SWARM OPTIMIZATION
title_sort new algorithm in nonlinear analysis of structures using particle swarm optimization
publisher IIUM Press, International Islamic University Malaysia
series International Islamic University Malaysia Engineering Journal
issn 1511-788X
2289-7860
publishDate 2016-11-01
description Solving systems of nonlinear equations is a difficult problem in numerical computation. Probably the best known and most widely used algorithm to solve a system of nonlinear equations is Newton-Raphson method. A significant shortcoming of this method becomes apparent when attempting to solve problems with limit points. Once a fixed load is defined in the first step, there is no way to modify the load vector should a limit point occur within the increment. To overcome this defect, displacement control methods for passing limit points can be used. In displacement control method, the load ratio in the first step of an increment is defined so that a particular key displacement component will change only by a prescribed amount. In this paper the load ratio is obtained using particle swarm optimization (PSO) algorithm so that the complex behavior of structures can be followed, automatically. Design variable is load ratio and its unbalanced force is also considered as objective function in optimization process. Numerical results are performed under geometrical nonlinear analysis, elastic post-buckling analysis and inelastic post-buckling analysis. The efficiency and accuracy of proposed method are demonstrated by solving these examples.   
url http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/581
work_keys_str_mv AT imanmansouri anewalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
AT alishahri anewalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
AT hassanzahedifar anewalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
AT imanmansouri newalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
AT alishahri newalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
AT hassanzahedifar newalgorithminnonlinearanalysisofstructuresusingparticleswarmoptimization
_version_ 1724592808958885888