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Application of shuffled complex evolution global optimization technique in the design of truss structures

机译:混合复杂进化全局优化技术在桁架结构设计中的应用

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This paper presents evolutionary-based optimization procedure for designing truss structures. The Shuffled Complex Evolution optimizer (SCEO) is used for solving the nonlinear constrained optimization problems. In this optimum design formulation, the objective function is the material weight of the truss; the design variables are the cross-sections of the truss members; the constraints are the stresses in members and the displacements of the joints. The constraints were handled using non-stationary dynamically modified penalty functions. Two classical truss optimization examples are presented herein to demonstrate the efficiency of the SCE algorithm. The two test problems include a 17-bar planar truss subjected to a single load condition and a 25-bar space truss subjected to two load conditions. The result shows that the SCEO method is very efficient in finding the best discovered optimal solutions, which are better, or at the same level of the results of other structural optimization methods.
机译:本文提出了基于进化的桁架结构优化程序。改组复杂演化优化器(SCEO)用于解决非线性约束优化问题。在这种最佳设计公式中,目标函数是桁架的材料重量;设计变量是桁架构件的横截面;约束是构件中的应力和关节的位移。使用非平稳动态修改的惩罚函数来处理约束。本文介绍了两个经典的桁架优化示例,以证明SCE算法的效率。这两个测试问题包括在单一载荷条件下的17巴平面桁架和在两种载荷条件下的25巴空间桁架。结果表明,SCEO方法在发现最佳发现的最佳解决方案方面非常有效,这些解决方案的效果更好,或与其他结构优化方法的结果处于同一水平。

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