Multi-channel sub-Nyquist cross-spectral estimation for modal analysis of vibrating structures

K. Gkoktsi, B. Tausiesakul, A. Giaralis
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引用次数: 4

Abstract

Operational modal analysis (OMA) is a widely used construction verification and structural health monitoring technique aiming to obtain the modal properties of vibrating civil engineering structures subject to ambient dynamic loads by collecting and processing structural response acceleration signals. Motivated by the need for cost-efficient OMA using wireless sensor networks which acquire and transmit measurements at a lower than the Nyquist rate, a novel OMA approach is put forth to derive modal properties directly from sub-Nyquist sampled (compressed) acceleration measurements from arrays of sensors. This is achieved by adopting sub-Nyquist deterministic non-uniform multi-coset sampling devices and by extending a previously proposed in the literature power spectrum blind sampling method for single-channel spectral estimation of stochastic processes to treat the case of multiple channel cross-spectral estimation. The standard frequency domain decomposition is used to obtain the modal properties from the cross-spectral matrix derived directly from the sub-Nyquist measurements. The applicability and efficiency of the proposed approach is exemplified by retrieving mode shapes of a white-noise excited simply supported steel beam with good accuracy according to the widely used modal assurance criterion using 70% less than the Nyquist rate measurements.
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振动结构模态分析的多通道亚nyquist交叉谱估计
运行模态分析(OMA)是一种广泛应用的施工验证和结构健康监测技术,旨在通过收集和处理结构响应加速度信号,获得土木工程结构在环境动荷载作用下的振动模态特性。考虑到使用无线传感器网络以低于奈奎斯特速率获取和传输测量值的经济高效的OMA的需求,提出了一种新的OMA方法,直接从传感器阵列的亚奈奎斯特采样(压缩)加速度测量值中获得模态属性。这是通过采用亚奈奎斯特确定性非均匀多协集采样装置,并通过扩展先前文献中提出的用于随机过程单通道频谱估计的功率谱盲采样方法来处理多通道交叉频谱估计的情况来实现的。使用标准频域分解从直接由亚奈奎斯特测量得到的交叉谱矩阵中获得模态特性。通过使用比奈奎斯特率小70%的测量值,按照广泛使用的模态保证准则检索白噪声激励简支钢梁的模态振型,获得了较好的精度,说明了该方法的适用性和有效性。
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