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Estimation of Rotational Degrees of Freedom by EMA and FEM Mode Shapes

机译:EMA和FEM模式形状估计自由度的旋转自由度

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In this paper a new technique is presented to estimate the rotational degrees of freedom of a flexural structure, using only a limited number of sensors that measure the translational DoFs of the system. A set of flexural mode shapes in a limited number of nodes is obtained by modal testing, while a different set of approximated mode is calculated by a Finite Element Model (FEM) at all the nodes and degrees of freedom of the structure. The technique is based on the classical assumption that the response can be determined by a linear combination of the structure's mode shapes. The structure's mode shapes are approximated by using the local correspondence principle for mode shapes, i.e. by using an optimally selected set of finite element mode shapes as Ritz vectors for the true mode shapes. This allows to obtain the rotational response at unmeasured DoFs. The technique is validated by comparing predicted and experimental results.
机译:在本文中,提出了一种新的技术来估计弯曲结构的旋转自由度,仅使用测量系统的平移DOF的有限数量的传感器。通过模态测试获得有限数量的节点中的一组弯曲模式形状,而在所有节点的有限元模型(FEM)和结构的自由度中,通过有限元模型(FEM)计算不同组的近似模式。该技术基于响应可以通过结构模式形状的线性组合来确定响应的经典假设。通过使用模式形状的本地对应原理来近似结构的模式形状,即通过使用最佳选择的一组有限元模式形状作为真正模式形状的RITZ向量。这允许在未测量的DOF处获得旋转响应。通过比较预测和实验结果来验证该技术。

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