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Identification of the Response of a Controlled Building Structure Subjected to Seismic Load by Using Nonlinear System Models

机译:利用非线性系统模型识别受地震作用的可控建筑结构的响应

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The present study investigates the prediction efficiency of nonlinear system-identification models, in assessing the behavior of a coupled structure-passive vibration controller. Two system-identification models, including Nonlinear AutoRegresive with eXogenous inputs (NARX) and adaptive neuro-fuzzy inference system (ANFIS), are used to model the behavior of an experimentally scaled three-story building incorporated with a tuned mass damper (TMD) subjected to seismic loads. The experimental study is performed to generate the input and output data sets for training and testing the designed models. The parameters of root-mean-squared error, mean absolute error and determination coefficient statistics are used to compare the performance of the aforementioned models. A TMD controller system works efficiently to mitigate the structural vibration. The results revealed that the NARX and ANFIS models could be used to identify the response of a controlled structure. The parameters of both two time-delays of the structure response and the seismic load were proven to be effective tools in identifying the performance of the models. A comparison based on the parametric evaluation of the two methods showed that the NARX model outperforms the ANFIS model in identifying structures response.
机译:本研究调查非线性系统辨识模型的预测效率,以评估耦合结构-被动振动控制器的行为。两种系统识别模型,包括带有外源输入的非线性自律回归(NARX)和自适应神经模糊推理系统(ANFIS),用于对结合了调谐质量阻尼器(TMD)的实验规模三层建筑物的行为进行建模承受地震载荷。进行实验研究以生成用于训练和测试设计模型的输入和输出数据集。均方根误差,平均绝对误差和确定系数统计参数用于比较上述模型的性能。 TMD控制器系统可以有效地减轻结构振动。结果表明,NARX和ANFIS模型可用于识别受控结构的响应。结构响应和地震荷载的两个时延参数均被证明是识别模型性能的有效工具。根据两种方法的参数评估进行的比较表明,在识别结构响应方面,NARX模型优于ANFIS模型。

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