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A Reliability-based Design optimization of Crane Metallic Structure based on Ant colony optimization and LHS

机译:基于蚁群优化和LHS的起重机金属结构可靠性设计优化

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Design optimization for crane metal structures (CMSs) is of great significance to reducing the weight and cost of structure. Although uncertainty is an inherent property existing in structure and deterministic design optimization (DDO) may result in an unreliable structure, optimization design considering uncertainty factors in crane structure is rare in studies at present. In view of this, the reliability-based design optimization (RBDO) is employed to the design of CMSs with random design variables and parameters in our research work. A discrete double loop RBDO model was constructed. In the inner loop, Latin hypercube sampling (LHS) combining with Monte Carlo simulation (MCS) were used to analyze the reliability of every design point of every constraint. In the outer loop, the ant colony optimization (ACO) algorithm was utilized to obtain the optimal result satisfying deterministic and probabilistic constraints. The engineering case shows that compared with the DDO, the RBDO can achieve a better tradeoff between cost and reliability based on security requirements.
机译:起重机金属结构(CMS)的设计优化对减轻结构的重量和成本具有重要意义。尽管不确定性是结构中存在的固有属性,确定性设计优化(DDO)可能会导致结构不可靠,但目前在研究中很少考虑到起重机结构中不确定性因素的优化设计。有鉴于此,在我们的研究工作中,基于可靠性的设计优化(RBDO)被用于具有随机设计变量和参数的CMS的设计。构造了一个离散的双回路RBDO模型。在内部循环中,使用拉丁超立方体采样(LHS)与蒙特卡洛模拟(MCS)相结合来分析每个约束的每个设计点的可靠性。在外循环中,利用蚁群优化算法获得满足确定性和概率约束的最优结果。工程案例表明,与DDO相比,RBDO可以基于安全要求在成本和可靠性之间取得更好的折衷。

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