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Output-only modal parameter identification for force-embedded acceleration data in the presence of harmonic and white noise excitations

机译:在存在谐波和白噪声激励的情况下,用于力嵌入加速度数据的仅输出模态参数识别

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Output-only modal parameter identification is based on the assumption that external forces on a linear structure are white noise. However, harmonic excitations are also often present in real structural vibrations. In particular, it has been realized that the use of forced acceleration responses without knowledge of external forces can pose a problem in the modal parameter identification, because an external force is imparted to its impulse acceleration response function. This paper provides a three-stage identification procedure as a solution to the problem of harmonic and white noise excitations in the acceleration responses of a linear dynamic system. This procedure combines the uses of the mode indicator function, the complex mode indication function, the enhanced frequency response function, an iterative rational fraction polynomial method and mode shape inspection for the correlation-related functions of the force-embedded acceleration responses. The procedure is verified via numerical simulation of a five-floor shear building and a two-dimensional frame and also applied to ambient vibration data of a large-span roof structure. Results show that the modal parameters of these dynamic systems can be satisfactorily identified under the requirement of wide separation between vibration modes and harmonic excitations.
机译:仅输出模态参数识别基于线性结构上的外力是白噪声的假设。但是,谐波激励通常也出现在实际的结构振动中。特别地,已经认识到,由于不知道外力而使用强制加速度响应会在模态参数识别中造成问题,因为将外力赋予了其脉冲加速度响应功能。本文提供了一个三阶段识别程序,以解决线性动力系统的加速度响应中的谐波和白噪声激励问题。该过程将模式指示符功能,复杂模式指示功能,增强的频率响应功能,迭代有理分数多项式方法和模式形状检查的使用结合在一起,用于嵌入力的加速度响应的相关函数。该程序通过五层剪切建筑物和二维框架的数值模拟得到了验证,并且还应用于大跨度屋顶结构的环境振动数据。结果表明,在振动模式和谐波激励之间要有较大分离的要求下,可以令人满意地识别这些动态系统的模态参数。

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