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ROBUST STRUCTURAL DESIGN OPTIMIZATION UNDER NON-PROBABILISTIC UNCERTAINTIES

机译:非概率不确定性下的鲁棒结构设计优化

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Robust structural design optimization with non-probabilistic uncertainties is often formulated as a two-level optimization problem. The top level optimization problem is simply to minimize a specified objective function while the optimized solution at the second level solution is within bounds. The second level optimization problem is to find the worst case design under non-probabilistic uncertainty. Although the second level optimization problem is a non-convex problem, the global optimal solution must be assured in order to guarantee the solution robustness at the first level. In this paper, a new approach is proposed to solve the robust structural optimization problems with non-probabilistic uncertainties. The WCDO problems at the second level are solved directly by the monotonocity analysis and the global optimality is assured. Then, the robust structural optimization problem is reduced to a single level problem and can be easily solved by any gradient based method. To illustrate the proposed approach, truss examples with non-probabilistic uncertainties on stiffness and loading are presented.
机译:具有非概率性不确定性的鲁棒结构设计优化通常被制定为两级优化问题。顶级优化问题只是为了最小化指定的目标函数,而第二级解决方案的优化解决方案在界限内。第二级优化问题是在非概率不确定性下找到最坏的情况设计。虽然第二级优化问题是非凸面的问题,但必须确保全局最优解决方案,以便保证在第一级的解决方案鲁棒性。本文提出了一种新的方法来解决非概率不确定性的稳健结构优化问题。通过单调分析直接解决了第二层的WCDO问题,并确保了全球最优性。然后,稳健的结构优化问题减少到单个级别问题,并且可以通过基于梯度的方法容易地解决。为了说明所提出的方法,提出了具有对刚度和装载的非概率不确定性的桁架示例。

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