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Structural optimization with an automatic mode identification method for tracking the local vibration mode

机译:具有用于跟踪局部振动模式的自动模式识别方法的结构优化

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摘要

Traditional optimization methods, which take a specific order of modal frequency as the design constraint, could fail to obtain the desired solution because of modal substitution. An improved optimization model with continuous sizing variables is established to solve this problem, in which the minimum weight and a given local modal frequency are considered as the objective and the constraint. To capture accurately the expected mode of vibration, a local mode identification technique is proposed based on the strain energy ratio between the local area and the whole structure. With that scheme, an optimization system is developed, in which the local mode can be effectively identified and the constraint can be updated with it in the iteration process. Two numerical examples, of a reinforced plate and a satellite structure, are applied to illustrate the effectiveness and efficacy of the proposed method.
机译:传统优化方法,采用模态频率的特定顺序作为设计约束,由于模态替代而无法获得所需的解决方案。 建立具有连续尺寸变量的改进的优化模型来解决该问题,其中最小权重和给定的本地模态频率被认为是目标和约束。 为了精确地捕获预期的振动模式,基于局域和整个结构之间的应变能比来提出局部模式识别技术。 利用该方案,开发了一种优化系统,其中可以有效地识别本地模式,并且可以在迭代过程中使用它更新约束。 应用增强板和卫星结构的两个数值例子以说明所提出的方法的有效性和功效。

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