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首页> 外文期刊>International journal of steel structures >A Linear Approach for Sizing Optimization of Isostatic Trussed Structures Subjected to External and Self-Weight Loads
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A Linear Approach for Sizing Optimization of Isostatic Trussed Structures Subjected to External and Self-Weight Loads

机译:用于外部和自重载荷的等静压结构尺寸优化的线性方法

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摘要

The implementation of a new linear method to optimum weight design of trussed structures subjected to external and self-weight loads is proposed. Design variables are the cross-section areas of the members. Inequality constraints are written based on the force-method for isostatic structures considering maximum and minimum axial stress criteria. The novelty of the proposed approach is the benefit created from the combination of a linear inequality-constrained formulation with interior-point methods to tunnel the solution rapidly and monotonically towards the minimum value through feasible space, also eliminating the need to directly explore the finite-element model. To evaluate the performance of the algorithm, trusses are subject to optimization processes based on different techniques: (i) the proposed method, called by indirect-method; (ii) a design problem with constraint evaluated directly from the finite-element model; (iii) optimization based on Genetic Algorithms. The three methods are compared using trusses with 10, 37 and 1240 bar-elements. The results showed that the indirect-method was able to provide great performance for complex topologies, returning weight designs up to 70 times lighter in 1% of the time required by a Genetic Algorithm.
机译:提出了一种新的线性方法,以进行外部和自重载荷的桁架结构的最佳重量设计。设计变量是成员的横截面区域。基于考虑最大和最小轴向应力标准的等静压结构的力量来写入不等式约束。提出的方法的新颖性是从线性不平等约束制剂的结合产生的益处与内部点方法迅速隧道隧道迅速隧道,单调通过可行空间朝着最小值朝着最小值,也消除了直接探索有限的必要性元素模型。为了评估算法的性能,桁架基于不同的技术进行优化过程:(i)所提出的方法,通过间接方法调用; (ii)直接从有限元模型评估约束的设计问题; (iii)基于遗传算法的优化。使用具有10,37和1240个条形元素的桁架进行比较三种方法。结果表明,间接方法能够为复杂的拓扑提供良好的性能,将重量设计高达70倍以遗传算法所需的时间较轻70倍。

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