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System identification of buildings equipped with closed-loop control devices

机译:配备闭环控制装置的建筑物的系统识别

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The purpose of this study is to provide a system identification tool to obtain dynamic structural properties of buildings when closed-loop control devices are in operation so that we will be able to detect possible damages or changes in the building structures without suspending the control devices. The difficulty associated with closed-loop systems, where noise, input and output signals are correlated, can be resolved using the output over-sampling approach. Using the approach, we were able to successfully obtain the open-loop properties of the building structures even when the control device is operated. Until now, it has been a common practice to temporarily suspend the closed-loop control circuits to measure the properties of the building without the influence of the control device. The control device is used as an exciter for the building structure with no feedback to the device. However, the true dynamic properties of the building when subject to control forces generated by the control devices that are operated as closed-loop systems may be different from those neglecting the control force. Thus, the output over-sampling approach was employed to overcome these difficulties. The employed approach was indeed able to estimate the properties of the building when the AMD, that is a typical vibration control device, is in operation under the condition that the control system can hold its control signal for the sampling period T.
机译:这项研究的目的是提供一种系统识别工具,以便在闭环控制设备运行时获得建筑物的动态结构特性,以便我们能够在不暂停控制设备的情况下检测到建筑物结构中可能出现的损坏或变化。可以使用输出过采样方法解决与噪声,输入和输出信号相关的闭环系统相关的困难。使用该方法,即使操作控制设备,我们也能够成功获得建筑结构的开环特性。迄今为止,在没有控制装置的影响的情况下,临时挂起闭环控制电路以测量建筑物的性能已成为普遍的惯例。该控制设备用作建筑结构的激励器,而没有对设备的反馈。然而,当建筑物受到由作为闭环系统运行的控制装置产生的控制力时,建筑物的真实动态特性可能与忽略控制力的那些特性不同。因此,采用输出过采样方法来克服这些困难。当作为典型振动控制设备的AMD在控制系统可以在采样周期T内保持其控制信号的条件下运行时,所采用的方法确实能够估算建筑物的性能。

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