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Identification and health monitoring of an instrumented building using earthquake response data

机译:使用地震响应数据识别和监测仪器仪表建筑

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This paper describes the identification of finite dimensional, linear, time-invariant models of a 4-story building in the state space representation using multiple data sets of earthquake response. The building, instrumented with 31 accelerometers, is located on the University of California, Irvine campus. Multiple data sets, recorded during the 2005 Yucaipa, 2005 San Clemente, 2008 Chino Hills, and 2009 Inglewood earthquakes, are used for identification and validation. Considering the response of the building as the output and the ground motion as the input, the state space models that represent the underlying dynamics of the building in the discrete-time domain corresponding to each data set are identified. The four state space models identified demonstrate that the response of the building is amplitude dependent with the response frequency, and damping, being dependent on the magnitude of ground excitation. The practical application of this finding is that the consistency of this building response to future earthquakes can be quickly assessed, within the range of ground excitations considered (0.005g - 0.074g), for consistency with prior response - this assessment of consistent response is discussed and demonstrated with reference to the four earthquake events considered in this study. Inclusion of data sets relating to future earthquakes will enable the findings to be extended to a wider range of ground excitation magnitudes.
机译:本文描述了使用多个地震响应数据集在状态空间表示中识别4层建筑物的有限维,线性,时不变模型的方法。该建筑物配备了31个加速度计,位于加利福尼亚大学尔湾分校的校园中。在2005年尤卡帕(Yucaipa),2005年圣克莱门特(San Clemente),2008年奇诺岗(Chino Hills)和2009年英格尔伍德(Inglewood)地震期间记录的多个数据集用于识别和验证。将建筑物的响应作为输出,将地面运动作为输入,可以确定代表各个数据集的离散时域中建筑物基础动态的状态空间模型。确定的四个状态空间模型表明,建筑物的响应幅度与响应频率有关,而阻尼与地面激励的幅度有关。该发现的实际应用是,在考虑的地面激励范围(0.005g-0.074g)内,可以快速评估该建筑物对未来地震的响应的一致性,以便与先前的响应保持一致-讨论了对这种一致响应的评估并参考本研究中考虑的四个地震事件进行了演示。包含与未来地震有关的数据集将使研究结果能够扩展到更广泛的地面激发震级范围。

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