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Identification of wind loads on super-tall buildings by Kalman filter

机译:用卡尔曼滤波器识别超高层建筑的风荷载

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An inverse method based on the discrete time Kalman filter is developed to simultaneously estimate the unknown wind-induced responses and wind loads of high-rise buildings using limited response measurements. The accuracy and effectiveness of the presented estimation method are assessed based on both wind tunnel test results and field measurements of wind effects on a super-tall building. The wind induced responses obtained by wind tunnel test are used to identify the wind loads on the super-tall building and evaluate the effects of crucial factors, such as covariance matrix of noise, initial estimation error, noise in measurements, modelling errors of structural dynamic properties and number of vibration modes, on the identification results. In addition, the wind loads are also estimated based on the field measured displacements during Typhoon Neoguri. Comparisons between the identified wind loads from the field measured displacements and the wind tunnel test results are made to verify the applicability of the inverse technique. The results of this study illustrate that the proposed inverse method is an efficient tool for predicting the wind loads on super-tall buildings from limited measurements of structural responses. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种基于离散时间卡尔曼滤波器的逆方法,以利用有限的响应测量值来同时估算高层建筑的未知风致响应和风荷载。基于风洞测试结果和对超高层建筑风影响的现场测量,评估了所提出估计方法的准确性和有效性。通过风洞测试获得的风致响应用于识别超高层建筑上的风荷载并评估关键因素的影响,例如噪声的协方差矩阵,初始估计误差,测量噪声,结构动力建模误差鉴定结果的性质和振动模式的数量。此外,还根据台风Neoguri期间实地测得的位移估算了风荷载。从现场测得的位移中识别出的风荷载与风洞测试结果进行了比较,以验证反演技术的适用性。这项研究的结果表明,所提出的逆方法是一种有效的工具,可以通过对结构响应的有限测量来预测超高层建筑的风荷载。 (C)2018 Elsevier Ltd.保留所有权利。

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