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Optimal design of dome truss structures with dynamic frequency constraints

机译:具有动态频率约束的拱形桁架结构的优化设计

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摘要

Controlling the values of natural frequencies of a structure plays an important role to keep the dynamic behavior of structures in a desirable level. This paper is concerned with the optimal design of large-scale dome structures with multiple natural frequency constraints. This optimization problem is highly nonlinear with several local optimums in its search space. The idea of cascading, which allows a single optimization problem to be tackled with a number of autonomous optimization stages is used. The procedure utilized in this paper reduces the objective function value over a number of optimization stages by initially operating on a small number of design variables, which is gradually increased stage after stage. In order to show the effect of using coarsening of variables for handling the optimization problem, independent of the effect of the algorithm, the recently developed approach (enhanced colliding bodies optimization) is employed in the entire stages of the present method. Besides, we want to demonstrate the positive effect of using multi-DVC cascade optimization procedure even if the utilized algorithm itself is a powerful method. In order to test the performance of the algorithm, four dome truss design examples with 120, 600, 1180 and 1410 elements are optimized. The numerical results prove that the utilized method is an effective tool for finding optimum design of structures with frequency constraints.
机译:控制结构的固有频率的值在将结构的动态行为保持在理想水平方面起着重要作用。本文涉及具有多个固有频率约束的大型圆顶结构的优化设计。该优化问题是高度非线性的,在其搜索空间中具有多个局部最优值。使用级联的思想,该思想允许通过多个自主优化阶段解决单个优化问题。本文中使用的过程通过最初对少量设计变量进行操作,从而在多个优化阶段中降低了目标函数值,并且逐步地逐步增加了它。为了显示使用变量的粗化来处理优化问题的效果,与算法的效果无关,在本方法的整个阶段都采用了最近开发的方法(增强碰撞体优化)。此外,即使所使用的算法本身是一种强大的方法,我们也想证明使用多DVC级联优化过程的积极效果。为了测试算法的性能,优化了具有120、600、1180和1410个元素的四个圆顶桁架设计实例。数值结果证明,该方法是寻找具有频率约束的结构最优设计的有效工具。

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