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Integration of health monitoring and vibration control for smart building structures with time-varying structural parameters and unknown excitations

机译:具有时变结构参数和未知激励的智能建筑结构的健康监测和振动控制的集成

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摘要

When a building structure requires both health monitoring system and vibration control system, integrating the two systems together will be cost-effective and beneficial for creating a smart building structure with its own sensors (nervous system), processors (brain system), and actuators (muscular system). This paper presents a real-time integrated procedure to demonstrate how health monitoring and vibration control can be integrated in real time to accurately identify time-varying structural parameters and unknown excitations on one hand, and to optimally mitigate excessive vibration of the building structure on the other hand. The basic equations for the identification of time-varying structural parameters and unknown excitations of a semi-active damper-controlled building structure are first presented. The basic equations for semi-active vibration control of the building structure with time-varying structural parameters and unknown excitations are then put forward. The numerical algorithm is finally followed to show how the identification and the control can be performed simultaneously. The results from the numerical investigation of an example building demonstrate that the proposed method is feasible and accurate.
机译:当建筑结构同时需要健康监控系统和振动控制系统时,将这两个系统集成在一起将具有成本效益,并且有利于创建具有自己的传感器(神经系统),处理器(大脑系统)和执行器的智能建筑结构(肌肉系统)。本文提出了一种实时集成程序,以演示如何实时集成健康监控和振动控制,以一方面准确地识别随时间变化的结构参数和未知的激励,并以最佳方式减轻建筑结构的过度振动。另一方面。首先介绍了用于识别时变结构参数和半主动阻尼器控制建筑结构的未知激励的基本方程式。提出了具有时变结构参数和未知激励的建筑结构半主动振动控制的基本方程。最后遵循数值算法,以显示如何同时执行识别和控制。实例建筑物的数值研究结果表明,该方法是可行和准确的。

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