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Research Progress of Synthesis and Modification Methods Based on Dynamic Substructures

机译:基于动态子结构的合成和修改方法研究进展

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摘要

In the process of model modification of large and complex structures, substructure synthesis method and modal reduction method have been widely used, but there are still some difficulties in precision control and engineering application in the process of model updating. In order to better study the dynamic response of the vibration substructure, the synthesis and correction method of the classical dynamic substructure is described in this paper, which provides a new idea for further engineering development. In the aspect of substructure synthesis method, the modal reduction of substructures, two methods of classical substructure synthesis, mechanical impedance method, singular value decomposition method, rigidity-flexibility equivalence, and transformation of degree of freedom are analyzed. The advantages and disadvantages of the above methods are discussed. In terms of substructure modification, the reference datum method, function dynamic modification method, neural network model modification, and frequency response function modification are analyzed, and the shortcomings of the dynamic substructure modification method are summarized. Finally, the development trend of dynamic substructure synthesis and modification algorithm is proposed.
机译:在大型和复杂结构的模型修改过程中,已经广泛使用了亚结构合成方法和模态减少方法,但在模型更新过程中,精密控制和工程应用仍有一些困难。为了更好地研究振动子结构的动态响应,本文描述了经典动态子结构的合成和校正方法,为进一步的工程开发提供了新的思路。在下结构合成方法的方面,分析了子结构的模态降低,分析了两种经典亚结构合成方法,机械阻抗法,奇异值分解方法,刚度灵活等效性和自由度的转换。讨论了上述方法的优点和缺点。在子结构修改方面,分析了参考基准方法,功能动态修改方法,神经网络模型修改和频率响应功能修改,总结了动态子结构修改方法的缺点。最后,提出了动态下结构合成和修改算法的发展趋势。

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