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Structural damage detection from wavelet coefficient sensitivity with model errors

机译:基于小波系数敏感性和模型误差的结构损伤检测

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摘要

The sensitivity of the wavelet coefficient from structural responses with respect to the system parameters is analytically derived. It is then used in a sensitivity-based inverse problem for structural damage detection with sinusoidal or impulsive excitation and acceleration and strain measurements. The sensitivity of the wavelet coefficient is shown more sensitive than the response sensitivity with an example of a single story plane frame. It is further found not sensitive to different types of model errors in the initial model including the support stiffness, mass density and flexural rigidity of members, damping ratio, and the excitation force. Simulation results show that the damage information is carried mostly in the higher vibration modes of the structure as diagnosed with the corresponding wavelet coefficients from its dynamic responses. A wavelet combination encompasses all the frequency bandwidth is used in the successful identification of a reinforced concrete beam in the laboratory.
机译:从结构响应关于系统参数的小波系数的敏感性被分析得出。然后将其用于基于灵敏度的反问题中,以正弦或脉冲激励以及加速度和应变测量进行结构损伤检测。以单个故事平面框架为例,表明小波系数的灵敏度比响应灵敏度更高。还发现它对初始模型中的不同类型的模型误差不敏感,这些模型误差包括构件的支撑刚度,质量密度和抗弯刚度,阻尼比和激励力。仿真结果表明,损伤信息主要在结构的较高振动模式下承载,通过相应的小波系数可从其动态响应中诊断出该信息。小波组合涵盖了所有频率带宽,用于在实验室中成功识别钢筋混凝土梁。

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