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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >An in situ modal-based method for structural dynamic joint parameter identification
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An in situ modal-based method for structural dynamic joint parameter identification

机译:基于模态的结构动力联合参数识别方法

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摘要

The present paper proposes an in situ modal parameter-based method for determining the dynamic joint characteristics of mechanical systems. The proposed method uses the mass, damping and stiffness matrices of the structure, calculated by the finite element method (FEM), along with measured eigenvectors and eigenvalues of the actual system. While the modal parameters at the joint must be known in order to identify the structural joint dynamic characteristics, it is often impossible to measure the response of the system directly at the joint location. To overcome this problem and eliminate the errors associated with using measurements close to the joints, an alternative indirect estimation scheme is used to determine the complete set of eigenvectors, and thus the eigenvector component corresponding to the joint location is extracted. Therefore, the proposed method allows in situ joint parameter identification. The efficiency of this method is validated by simulations with different mechanical systems, and the robustness is also demonstrated with errors introduced into the estimated eigenvectors. Finally, the method is implemented for experimental identification of the joint parameters of an actual spindle system.
机译:本文提出了一种基于现场模态参数的机械系统动态关节特性确定方法。所提出的方法使用通过有限元方法(FEM)计算的结构的质量,阻尼和刚度矩阵,以及实际系统的实测特征向量和特征值。虽然必须知道关节处的模态参数以识别结构的关节动力学特性,但通常无法直接在关节位置测量系统的响应。为了克服这个问题并消除与在关节附近使用测量相关的误差,可以使用另一种间接估计方案来确定特征向量的完整集合,从而提取与关节位置相对应的特征向量分量。因此,所提出的方法允许原位联合参数识别。该方法的效率通过不同机械系统的仿真得到了验证,并且通过将误差引入估计的特征向量中也证明了其鲁棒性。最后,该方法被实现用于实际主轴系统的关节参数的实验识别。

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