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Modal parameters of a rotating multiple-disk-shaft system from simulated frequency response data

机译:基于模拟频率响应数据的旋转多盘轴系统的模态参数

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摘要

Modal parameters of a rotating multiple disk-shaft system are estimated in Multiple Input/Multiple Output (MIMO) scheme. The response at multiple output degrees of freedom (dofs) and excitations at multiple input (reference) dofs are related through the Frequency Response Function (FRF) matrix. The corresponding Impulse Response Function (IRF) matrix is obtained by Inverse Fast Fourier Transform (IFFT) of the FRF matrix. The resulting FRF matrix is not symmetric due to the gyroscopic effects introduced by rotation. The Eigensystem Realization Algorithm (ERA) and its equivalent low order time domain algorithm, based on the Unified Matrix Polynomial Approach (UMPA) are employed to estimate the desired modal parameters, i.e., system eigenvalues and the associated right hand and left hand eigenvectors. The right hand vectors are estimated from multiple columns of the FRF matrix with the structure rotating in one direction, and the left hand vectors are estimated from the multiple rows of the FRF matrix, which are calculated as the transpose of the same multiple columns of the FRF matrix, estimated with rotation in the opposite direction. The obtained results are found to be in excellent agreement with results obtained from Theoretical Modal Analysis (TMA).
机译:在多输入/多输出(MIMO)方案中估算旋转多盘轴系统的模态参数。通过频率响应函数(FRF)矩阵来关联多个输出自由度(dofs)的响应和多个输入(参考)自由度的激励。相应的脉冲响应函数(IRF)矩阵是通过FRF矩阵的快速傅立叶逆变换(IFFT)获得的。由于旋转引入的陀螺效应,所得的FRF矩阵不对称。基于统一矩阵多项式方法(UMPA)的特征系统实现算法(ERA)及其等效的低阶时域算法用于估计所需的模态参数,即系统特征值以及相关的左右手特征向量。从结构沿一个方向旋转的FRF矩阵的多列中估计右手矢量,从FRF矩阵的多行中估计左手矢量,将它们计算为FRF矩阵的相同多列的转置。 FRF矩阵,以相反方向旋转估算。发现所获得的结果与从理论模态分析(TMA)获得的结果非常一致。

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