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Source Characterization for Automotive Applications Using Innovative Techniques

机译:采用创新技术的汽车应用来源特征

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摘要

Transfer path analysis (TPA) and source characterization using the in-situ blocked force methodology is becoming increasingly common in the automotive world. While robust techniques exist for this type of characterization in general, there are certain conditions where the analysis is more straight-forward than others. In this work, several techniques are presented to help improve the characterization across different frequency ranges. At the very low frequencies, where structures should behave rigidly, TPA results can be improved by filtering out any non-rigid body motion from a set of measured FRFs. In the mid-frequency range, testing can be simplified using a volume source to capture reciprocal FRFs and then predict sound levels at the driver's ear. In the mid- and high- frequency ranges, the addition of rotational FRFs can help improve TPA predictions. These techniques are demonstrated using recent test results on various components and vehicles in this paper.
机译:使用原位阻塞力方法的转移路径分析(TPA)和源表征在汽车世界中越来越普遍。 虽然这种类型的特征存在稳健的技术,但是,存在某些条件,其中分析比其他条件更直接。 在这项工作中,提出了几种技术来帮助改善不同频率范围的表征。 在非常低的频率下,在结构应该刚性的情况下,可以通过从一组测量的FRF滤除任何非刚性身体运动来改善TPA结果。 在中频范围内,可以使用音量源简化测试以捕获互惠FRF,然后在驾驶员的耳朵上预测声级。 在中高频率范围内,添加旋转FRF可以帮助改善TPA预测。 这些技术在本文中的各种部件和车辆上使用最近的测试结果来证明。

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