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A Comparison of Reduced Order Modeling Techniques Used in Dynamic Substructuring

机译:动态子结构中使用的降阶建模技术的比较

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摘要

Experimental dynamic substructuring is a means whereby a mathematical model for a substructure can be obtained experimentally and then coupled to a model for the rest of the assembly to predict the response. Recently, various methods have been proposed that use a transmission simulator to overcome sensitivity to measurement errors and to exercise the interface between the substructures; including the Craig-Bampton, Dual Craig-Bampton, and Craig-Mayes methods. This work compares the advantages and disadvantages of these reduced order modeling strategies for two dynamic substructuring problems. The methods are first used on an analytical beam model to validate the methodologies. Then they are used to obtain an experimental model for structure consisting of a cylinder with several components inside connected to the outside case by foam with uncertain properties. This represents an exceedingly difficult structure to model and so experimental substructuring could be an attractive way to obtain a model of the system.
机译:实验动态子结构是一种可以通过实验获得子结构的数学模型,然后将其耦合到其余组件的模型以预测响应的方法。最近,已经提出了各种使用传输模拟器来克服对测量误差的敏感性并在子结构之间进行交互的方法。包括Craig-Bampton,Dual Craig-Bampton和Craig-Mayes方法。这项工作比较了针对两个动态子结构问题的这些降阶建模策略的优缺点。该方法首先用于分析光束模型以验证方法。然后,它们用于获得由圆柱体组成的结构的实验模型,该圆柱体的内部多个组件通过不确定性的泡沫连接到外壳。这表示要建模非常困难的结构,因此实验性子结构可能是获得系统模型的一种有吸引力的方式。

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