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Minimax optimization problem of structural design

机译:结构设计的极小极大优化问题

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摘要

The paper discusses a problem of robust optimal design of elastic structures when the loading is unknown. It is assumed that only an integral constraint for the loading is given. We suggest to minimize the principal compliance of the domain equal to the maximum of the stored energy over all admissible loadings. The principal compliance is the maximal compliance under the extreme, worst possible loading. Hence the robust design should optimize the behavior of the structure in the worst possible scenario, which itself depends on the structure and is subject of optimization. We formulate the problem of robust optimal design as a min-max problem for the energy stored in the structure. The maximum of the energy is chosen over the constrained class of loadings, while the minimum is taken over the set of design parameters. We show that the problem for the extreme loading can be reduced to an elasticity problem with mixed nonlinear boundary condition; this problem may have multiple solutions. The optimization with respect to the designed structure takes into account the possible multiplicity of extreme loadings so that in the optimal design the strong material is distributed to equally resist to all extreme loadings. Continuous change of the loading constraint causes bifurcation of the solution of the optimization problem. We show that an invariance of the constraints under a symmetry transformation leads to a symmetry of the optimal design. Examples of robust optimal design are demonstrated.
机译:本文讨论了未知载荷时弹性结构的鲁棒优化设计问题。假定仅给出了载荷的积分约束。我们建议最小化该域的主柔量,该主柔量等于所有容许负载上的最大存储能量。主要的顺应性是在极端,最坏的可能负载下的最大顺应性。因此,稳健的设计应在最坏的情况下优化结构的行为,该情况本身取决于结构并且是优化的主题。我们将稳健的最佳设计问题表述为存储在结构中的能量的最小-最大问题。能量的最大值在受约束的载荷类别中选择,而最小值则在一组设计参数中采用。我们证明了极限载荷的问题可以简化为混合非线性边界条件下的弹性问题。这个问题可能有多种解决方案。在设计结构方面的优化考虑了极端载荷的可能多重性,因此在最佳设计中,坚固的材料被分配以均等地抵抗所有极端载荷。负载约束的连续变化导致优化问题的解决方案分叉。我们表明,对称变换下约束的不变性导致最优设计的对称性。演示了可靠的最佳设计示例。

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