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Elimination of transducer mass loading effects in shaker modal testing

机译:消除振动器模态测试中传感器质量负载的影响

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摘要

In modal testing, some sensors having to be mounted on the test structure will introduce extra mass loading to the system and then adversely affect the measured Frequency Response Functions (FRFs). This paper deals with elimination of accelerometer and force transducer mass loading effects from measured FRFs (including point FRF and transfer FRF) in shaker modal testing. Considering different sensors for response measurements, two common collocations in shaker modal testing are investigated: (1) shaker + Laser Doppler vibrometer case in which only force transducer mass loading effects need to be removed, and (2) shaker + accelerometer case in which both accelerometer and force transducer mass should be eliminated. The correction method employed for case (1) is theoretically deduced and it demonstrates a good performance in experimental validation. Two correction methods are proposed for case (2) and the numerical simulation shows that one of them is effective with certain degree noisy data, however, another is vulnerable to the noise. The main reason for the sensitivity of the method to noise is analyzed and further work is necessary in order to solve this difficulty.
机译:在模态测试中,某些必须安装在测试结构上的传感器会给系统带来额外的质量负载,然后对测量的频率响应函数(FRF)产生不利影响。本文探讨了在振动器模态测试中,从测量的FRF(包括点FRF和传递FRF)中消除加速度计和力传感器质量负载的影响。考虑用于响应测量的不同传感器,研究了振动器模态测试中的两种常见搭配:(1)振动器+激光多普勒振动计情况,其中仅需要消除力传感器的质量载荷效应;(2)振动器+加速度计情况,其中两者加速度计和力传感器的质量应消除。理论上推导了案例(1)所采用的校正方法,并在实验验证中证明了良好的性能。针对情况(2)提出了两种校正方法,数值仿真表明,其中一种方法对一定程度的噪声数据有效,而另一种方法容易受到噪声的影响。分析了该方法对噪声敏感的主要原因,为了解决该困难,需要进一步的工作。

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