Operational modal analysis of mechanical systems using transmissibility functions in the presence of harmonics

Van-Dong Do, T. Le, A. Béakou
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引用次数: 3

Abstract

Ambient vibration testing is a preferred technique for heath monitoring of civil engineering structures because of several advantages such as simple equipment, low cost, continuous use and real boundary conditions. However, the excitation not controlled and not measured, is always assumed as Gaussian white noise in the processing of ambient responses called operational modal analysis. In presence of harmonics due to rotating parts of machines or equipment inside the structures, e.g., fans or air-conditioners…, the white noise assumption is not verified and the response analysis becomes difficult and it can even lead to biased results. Recently, transmissibility function has been proposed for the operational modal analysis. Known as independent of excitation nature in the neighborhood of a system's pole, the transmissibility function is thus applicable in presence of harmonics. This study proposes therefore to apply the transmissibility functions for modal identification of ambient vibration testing and investigates its performance in presence of harmonics. Numerical examples and an experimental test are used for illustration and validation. Keywords: operational modal analysis; transmissibility function; harmonic component; ambient vibration testing.
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在谐波存在下用传递函数分析机械系统的运行模态
环境振动测试具有设备简单、成本低、可连续使用、边界条件真实等优点,是土木工程结构健康监测的首选技术。然而,在处理称为操作模态分析的环境响应时,不受控制和不被测量的激励通常被假定为高斯白噪声。由于结构内部的机器或设备(如风扇或空调等)的旋转部件存在谐波,白噪声假设无法得到验证,响应分析变得困难,甚至可能导致结果偏差。近年来,人们提出了传递率函数用于运行模态分析。众所周知,传递率函数与系统极点附近的激励性质无关,因此适用于存在谐波的情况。因此,本研究提出将传递函数应用于环境振动测试的模态识别,并研究其在谐波存在下的性能。用数值算例和实验测试进行了说明和验证。关键词:运维模态分析;遗传性功能;谐波分量;环境振动测试。
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