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Identification of modal parameters of non-classically damped linear structures under multi-component earthquake loading

机译:多分量地震作用下非经典阻尼线性结构的模态参数识别

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摘要

A method for parametric system identification of classically damped linear system in frequency domain is adopted and extended for non-classically damped linear systems subjected up to six components of earthquake ground motions. This method is able to work in multi-input/multi-output (MIMO) case. The response of a two-degree-of-freedom model with non-classical damping, excited by one-component earthquake ground motion, is simulated and used to verify the proposed system identification method in the single-input/multi-output case. Also, the records of a 10 storey real building during the Northridge earthquake is used to verify the proposed system identification method in the MIMO case. In this case, at first, a single-input/multi-output assumption is considered for the system and modal parameters are identified, then other components of earthquake ground motions are added, respectively, and the modal parameters are identified again. This procedure is repeated until all four components of earthquake ground motions which are measured at the base level of the building are included in the identification process. The results of identification of real building show that consideration of non-classical damping and inclusion of the multi-components effect of earthquake ground motions can improve the least-squares match between the finite Fourier transforms of recorded and calculated acceleration responses.
机译:采用了频域经典阻尼线性系统的参数系统辨识方法,并将其扩展到非经典阻尼线性系统,该系统可承受地震地震动的六个分量。该方法能够在多输入/多输出(MIMO)情况下工作。仿真了单分量地震地震动激励下具有非经典阻尼的两自由度模型的响应,并将其用于验证所提出的单输入/多输出情况下的系统识别方法。此外,在北岭地震中一栋10层高的真实建筑物的记录也被用来验证MIMO情况下所提出的系统识别方法。在这种情况下,首先,考虑系统的单输入/多输出假设并确定模态参数,然后分别添加地震地震动的其他分量,然后再次确定模态参数。重复此过程,直到在建筑物的基础层上测量的地震地震动的所有四个分量都包括在识别过程中为止。真实建筑物的识别结果表明,考虑非经典阻尼和考虑地震地震动的多分量效应可以改善记录和计算的加速度响应的有限傅里叶变换之间的最小二乘匹配。

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