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Structural design optimization under dynamic reliability constraints based on probability density evolution method and quantum-inspired optimization algorithm

delete2023-10-01
delete5
PRE
AI
L
Li-Li Weng
J
Jiashu Yang
陈建兵 cover
陈建兵 (Jianbing Chen) *
M
Michael Beer
DOI:10.1016/j.probengmech.2023.103494delete
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Abstract

Abstract

En 中文
Dynamic-reliability-based design optimization (DRBDO) has been a promising approach for designing structures under dynamic excitations in the presence of uncertainties. This paper proposes an effective scheme for solving class of DRBDO problems. The proposed scheme is based on the quantum particle swarm optimization (QPSO) algorithm, a quantum-inspired algorithm that utilizes quantum mechanisms to achieve better exploration and exploitation. During the optimization process, the probability density evolution method (PDEM) combined with the extreme value distribution strategy is employed to evaluate the structural dynamic reliability. Due to the high efficiency of the PDEM, the computational cost associated with reliability assessments can be considerably reduced. Numerical examples involving linear and nonlinear structures with different types of design variables are presented to demonstrate the effectiveness and efficiency of the proposed scheme.
Keywords:
Dynamic-reliability-based design optimization
Dynamic reliability
Probability density evolution method
Quantum particle swarm optimization

Journal

Probabilistic Engineering Mechanics cover
Probabilistic Engineering Mechanics
IF:
3.5
Papers:
1.7K
Citations:
4.1K

Organization

L
Leibniz University Hannover
Scholars:
1.1W
Papers: 8.5K
Citations: 1.1W
T
tongji university
Scholars:
7.8W
Papers: 5.9W
Citations: 98