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首页> 外文期刊>Australian Journal of Structural Engineering >A study of variability and applicability of various signal processing techniques in structural system identification
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A study of variability and applicability of various signal processing techniques in structural system identification

机译:各种信号处理技术在结构系统识别中的变异性和适用性研究

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摘要

The structural responses and vibration properties such as frequencies and mode shapes are directly related to the structural mass and stiffness. Changing structural conditions will affect the structural responses and vibration properties. Structural conditions can thus be identified through measurements of structural vibration. However, certain uncertainties associated with structure models, changing ambient environmental conditions, changing loading conditions, equipment noises and various signal processing techniques used in extracting structural vibration properties, etc. is inevitable. The influences of these uncertainties on structural vibration properties might be more significant than that of the structural damage, therefore, cause false identification or result in the true structural damage not identifiable. This paper studies the applicability and reliability of a few popularly used modal identification methods including time-domain, frequency-domain and time-frequency domain methods for civil structural system identification. The results indicate that on average a 2% to 3% error tends to be yielded by using different signal processing techniques for vibration frequencies identification when the signal is not heavily noise contaminated, which should be taken into account when estimating the damage detection results. The applicability of the time-frequency domain methods to the identification of time-varying system either with sudden change or continuous variance is also discussed.
机译:结构响应和振动特性(例如频率和振型)与结构质量和刚度直接相关。不断变化的结构条件将影响结构响应和振动特性。因此可以通过测量结构振动来确定结构条件。然而,与结构模型,变化的周围环境条件,变化的负载条件,设备噪声以及用于提取结构振动特性的各种信号处理技术等相关的某些不确定性是不可避免的。这些不确定性对结构振动特性的影响可能比结构破坏的影响更大,因此会导致错误的识别或导致无法识别的真实结构破坏。本文研究了几种常用的模态识别方法的适用性和可靠性,包括时域,频域和时频域方法在土木结构系统识别中的应用。结果表明,当信号未受到严重噪声污染时,通过使用不同的信号处理技术来识别振动频率,平均倾向于会产生2%至3%的误差,在估计损坏检测结果时应考虑到这一点。还讨论了时频域方法在时变系统的突然变化或连续变化识别中的适用性。

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