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A system response prediction approach based on global transmissibilities and its relation with transfer path analysis methods

机译:基于全局可传递性的系统响应预测方法及其与传递路径分析方法的关系

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In this paper, a response prediction approach based on global transmissibilities is proposed to improve transfer path analysis (TPA) methods. The method allows predicting the system response when a subsystem becomes connected to the ground using easily measured variables of the original system. It avoids the necessity to perform demounting tests and to measure, or indirectly determine operational forces. The mathematical relationships between the proposed method and TPA methods are derived. Four TPA relations are discussed: the classical TPA relation, the OPA relation, the Advanced TPA relation and the Component-based TPA relation. The advantage of this method is that it estimates the properties of a mechanical system or subsystems using in-situ measurements. These properties are the transmissibility between two sets of responses, the coupled and uncoupled transfer functions between responses and forces. The TPA relationships are validated by numerical and experimental case studies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种基于全局透射率的响应预测方法,以改进传输路径分析(TPA)方法。该方法允许使用原始系统的易于测量的变量来预测子系统连接到地面时的系统响应。它避免了执行拆卸测试以及测量或间接确定操作力的必要性。推导了所提出的方法与TPA方法之间的数学关系。讨论了四种TPA关系:经典TPA关系,OPA关系,高级TPA关系和基于组件的TPA关系。该方法的优点是它可以使用原位测量来估计机械系统或子系统的属性。这些属性是两组响应之间的可传递性,即响应和力之间的耦合和非耦合传递函数。通过数值和实验案例研究验证了TPA关系。 (C)2017 Elsevier Ltd.保留所有权利。

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