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Sensitivity of decoupling techniques to uncertainties in the properties

机译:分离技术对性质不确定性的敏感性

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In this paper the decoupling problem, i.e. the identification of the dynamic behaviour of a structural subsystem, starting from information about the remaining part of the structural system (residual subsystem) and from the known dynamic behaviour of the complete system, is considered. In spite of promising applications, the decoupling problem presents some pitfalls that are difficult to avoid, such as lack of information on coupling DoFs (rotational DoFs) and ill-conditioning around particular frequencies. Two FRF based approaches are considered: an impedance based approach and a mobility based approach. In both approaches, the FRF matrix of the coupled system is assumed to be known at the coupling DoFs, and eventually at some internal DoFs of the residual subsystem. Information about the residual subsystem can consist either of measured FRFs or of a physical model. In the latter case, it is interesting to analyse how the predicted dynamic behaviour of the unknown subsystem is affected by uncertainties in the properties of the residual subsystem.
机译:在本文中,考虑了解耦问题,即,从关于结构系统(残差子系统)的剩余部分(残差子系统)和完整系统的已知动态行为的信息开始,识别结构子系统的动态行为。尽管有希望的应用,但去耦问题呈现了一些难以避免的陷阱,例如缺乏关于耦合DOF(旋转DOF)和围绕特定频率的不良调节的信息。考虑了两个基于FRF的方法:基于阻抗的方法和基于移动性的方法。在这两种方法中,假设耦合系统的FRF矩阵在耦合DOF处是已知的,并且最终在残余子系统的一些内部DOF处。有关残差子系统的信息可以包括测量的FRF或物理模型。在后一种情况下,有趣的是分析未知子系统的预测动态行为如何受到残余子系统属性的不确定性的影响。

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