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Experimental issues related to frequency response function measurements for frequency-based substructuring

机译:与基于频率的子结构的频率响应函数测量相关的实验问题

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Frequency-based substructuring is a very popular approach for the generation of system models from component measured data. Analytically the approach has been shown to produce accurate results. However, implementation with actual test data can cause difficulties and cause problems with the system response prediction. In order to produce good results, extreme care is needed in the measurement of the drive point and transfer impedances of the structure as well as observe all the conditions for a linear time invariant system.rnSeveral studies have been conducted to show the sensitivity of the technique to small variations that often occur during typical testing of structures. These variations have been observed in actual tested configurations and have been substantiated with analytical models to replicate the problems typically encountered. The use of analytically simulated issues helps to clearly see the effects of typical measurement difficulties often observed in test data.rnThis paper presents some of these common problems observed and provides guidance and recommendations for data to be used for this modeling approach.
机译:基于频率的子结构是从组件测量数据生成系统模型的一种非常流行的方法。分析表明,该方法可产生准确的结果。但是,使用实际测试数据实施可能会带来困难,并导致系统响应预测出现问题。为了获得良好的结果,在结构的驱动点和传输阻抗的测量以及观察线性时不变系统的所有条件时都需要格外小心。rn已经进行了多次研究,以证明该技术的敏感性。在典型的结构测试过程中经常发生的微小变化。这些差异已经在实际测试配置中观察到,并已通过分析模型加以证实,以复制通常遇到的问题。使用分析模拟的问题有助于清楚地看到经常在测试数据中观察到的典型测量困难的影响。本文介绍了一些观察到的常见问题,并提供了用于此建模方法的数据的指导和建议。

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