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Information Journal Paper

Title

OPTIMUM SHAPE DESIGN OF DOUBLE-LAYER GRIDS BY QUANTUM BEHAVED PARTICLE SWARM OPTIMIZATION AND NEURAL NETWORKS

Pages

  85-98

Abstract

 In this paper, a methodology is presented for OPTIMUM SHAPE DESIGN of DOUBLE-LAYER GRIDs subject to gravity and earthquake loadings. The design variables are the number of divisions in two directions, the height between two layers and the cross-sectional areas of the structural elements. The objective function is the weight of the structure and the design constraints are some limitations on stress and slenderness of the elements besides the vertical displacements of the joints. To achieve the optimization task a variant of particle swarm optimization (PSO) entitled as QUANTUM-BEHAVED PARTICLE SWARM OPTIMIZATION (QPSO) algorithm is employed. The computational burden of the optimization process due to performing TIME HISTORY ANALYSIS is very high. In order to decrease the optimization time, the radial basis function (RBF) neural networks are employed to predict the desired responses of the structures during the optimization process. The numerical results demonstrate the effectiveness of the presented methodology.

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  • Cite

    APA: Copy

    GHOLIZADEH, S., TORKZADEH, P., & JABARZADEH, S.. (2013). OPTIMUM SHAPE DESIGN OF DOUBLE-LAYER GRIDS BY QUANTUM BEHAVED PARTICLE SWARM OPTIMIZATION AND NEURAL NETWORKS. INTERNATIONAL JOURNAL OF OPTIMIZATION IN CIVIL ENGINEERING, 3(1), 85-98. SID. https://sid.ir/paper/329408/en

    Vancouver: Copy

    GHOLIZADEH S., TORKZADEH P., JABARZADEH S.. OPTIMUM SHAPE DESIGN OF DOUBLE-LAYER GRIDS BY QUANTUM BEHAVED PARTICLE SWARM OPTIMIZATION AND NEURAL NETWORKS. INTERNATIONAL JOURNAL OF OPTIMIZATION IN CIVIL ENGINEERING[Internet]. 2013;3(1):85-98. Available from: https://sid.ir/paper/329408/en

    IEEE: Copy

    S. GHOLIZADEH, P. TORKZADEH, and S. JABARZADEH, “OPTIMUM SHAPE DESIGN OF DOUBLE-LAYER GRIDS BY QUANTUM BEHAVED PARTICLE SWARM OPTIMIZATION AND NEURAL NETWORKS,” INTERNATIONAL JOURNAL OF OPTIMIZATION IN CIVIL ENGINEERING, vol. 3, no. 1, pp. 85–98, 2013, [Online]. Available: https://sid.ir/paper/329408/en

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