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Damping Estimation by 2D dr_APES and its Application to a Real Cable-Stayed Bridge

机译:二维dr_APES的阻尼估计及其在实际斜拉桥中的应用

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摘要

Introduced herein is a new structural damping identification approach based on a two-dimensional (2D) amplitude and phase estimation (APES) method. The original APES method is suitable for application to an undamped and complex harmonic vibration signal. Hence, it has to be modified for application to real damped vibration signals such as the vibration test signals in engineering structures. This modified approach will be named as dr-APES. It can transform one-dimensional (1D) signals in time domain into their corresponding signals in the 2D domain of frequency and damping factor. By applying this dr-APES approach, the three-dimensional (3D) amplitude spectrum, with peaks corresponding to the vibration modes, can be obtained for any given vibration signals. By accurately locating the coordinates of the peaks, modal frequencies and damping factors can be identified. Owing to the high-resolution of the location of 2D ordinates of the spectral line and the value of spectrum, the accurate location of peaks can be estimated, and therefore, the modal frequencies and damping factor can be accurately determined. This is demonstrated by a numerical case study. Moreover, by applying the proposed approach to a real onsite dynamic test on two cables in a cable-stayed bridge, the inherent damping of the two cables was identified accurately, thereby verifying the ability of proposed damping identification approach in meeting the requirement of weak damping characteristics identification in flexible structures such as naked cables.
机译:本文介绍的是一种基于二维(2D)幅度和相位估计(APES)方法的新型结构阻尼识别方法。原始的APES方法适用于无阻尼且复杂的谐波振动信号。因此,必须对其进行修改以应用于实际的阻尼振动信号,例如工程结构中的振动测试信号。这种修改后的方法将被命名为dr-APES。它可以将时域的一维(1D)信号转换为频率和阻尼因数的2D域中的相应信号。通过应用这种dr-APES方法,可以针对任何给定的振动信号获得具有对应于振动模式的峰值的三维(3D)振幅谱。通过准确定位峰的坐标,可以识别模态频率和阻尼因子。由于光谱线的二维坐标的位置和光谱的值的高分辨率,可以估计峰的精确位置,因此,可以精确地确定模态频率和阻尼系数。数值案例研究证明了这一点。此外,通过将所提出的方法应用于斜拉桥中两根电缆的实际现场动态测试,可以准确地识别出这两根电缆的固有阻尼,从而验证了所提出的阻尼识别方法满足弱阻尼要求的能力。裸露电缆等柔性结构中的特征识别。

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