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Multi-objective structure dynamic optimization based on equivalent static loads

机译:基于等效静载荷的多目标结构动态优化

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摘要

Aiming at the problems such as low computational efficiency and long process in dynamic topology optimization, combined with bi-directional evolutional structure optimization, the dynamic optimization problem is transformed into the static optimization problem in multiple load cases. Newmark method is used to analyze the structure dynamics load. The topology optimization model based on equivalent static load is established. On the basis of the equivalent static load, multi-objective dynamics evolutionary structure optimization is studied. And the mathematical model of the dynamic stiffness and natural frequency about the multi-objective optimization is established. The mathematical formula of the sensitivity is deduced. Then a complete optimization iterative process is given. The numerical example illustrates that it is feasible to solve the multi-objective dynamic topology optimization with equivalent static loads. Modal tracking technique is introduced to the multi-objective dynamic topology optimization. The numerical example shows that modal tracking technology can track the required modal in the optimization process.
机译:针对动态拓扑优化中的低计算效率和长过程等问题,结合双向进化结构优化,动态优化问题在多重负载箱中转换为静态优化问题。 Newmark方法用于分析结构动态负载。建立了基于等效静态负载的拓扑优化模型。在等效静载荷的基础上,研究了多目标动态进化结构优化。建立了关于多目标优化的动态刚度和自然频率的数学模型。推导出灵敏度的数学公式。然后给出完整的优化迭代过程。该数值示例说明了解使用等效静态负载来解决多目标动态拓扑优化是可行的。将模态跟踪技术引入多目标动态拓扑优化。数值示例显示模态跟踪技术可以跟踪优化过程中所需的模态。

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