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Verification of system identification utilizing shaking table tests of a full-scale 4-story steel building

机译:使用大型4层钢结构建筑的振动台测试验证系统识别

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This paper verifies the feasibility of the proposed system identification methods by utilizing shaking table tests of a full-scale four-story steel building at E-Defense in Japan. The natural frequencies, damping ratios and modal shapes are evaluated by single-input-four-output ARX models. These modal parameters are prepared to identify the mass, damping and stiffness matrices when the objective structure is modelled as a four degrees of freedom (4DOF) linear shear building in each horizontal direction. The nonlinearity in stiffness is expressed as a Bouc-Wen hysteretic system when it is modelled as a 4DOF nonlinear shear building. The identified hysteretic curves of all stories are compared to the corresponding experimental results. The simple damage detection is implemented using single-input-single-output ARX models, which require only two measurements in each horizontal direction. The modal parameters are equivalent-linearly evaluated by the recursive Least Squares Method with a forgetting factor. When the structure is damaged, its natural frequencies decrease, and the corresponding damping ratios increase. The fluctuation of the identified modal properties is the indirect information for damage detection of the structure. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文通过对日本E-Defense的一栋四层全尺寸钢结构建筑物进行振动台试验,验证了所提出的系统识别方法的可行性。通过单输入四输出ARX模型评估固有频率,阻尼比和模态形状。当在每个水平方向上将目标结构建模为四自由度(4DOF)线性剪切建筑物时,准备这些模态参数以标识质量,阻尼和刚度矩阵。当将其建模为4DOF非线性剪力建筑物时,刚度的非线性表示为Bouc-Wen滞后系统。将确定的所有故事的滞后曲线与相应的实验结果进行比较。使用单输入单输出ARX模型可实现简单的损坏检测,该模型在每个水平方向仅需要两次测量。模态参数通过递归最小二乘方法具有遗忘因子,进行等效线性评估。当结构损坏时,其固有频率会降低,相应的阻尼比也会增加。所识别的模态特性的波动是用于结构损伤检测的间接信息。版权所有(c)2015 John Wiley&Sons,Ltd.

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