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Development of a new method for online parameter identification in seismically excited smart building structures using virtual synchronization and adaptive control design

机译:使用虚拟同步和自适应控制设计在地震激发智能建筑结构中开发在线参数识别的新方法

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In this paper a new method for online parameter identification and damage detection in smart building structures that are subjected to arbitrary seismic excitation is proposed. It uses real-time measurements of a structure's motion to identify its unknown constant or piecewise constant parameters such as stiffness, damping and mass over the time. The method is based on elements of system synchronization and adaptive control theories. First, a computational system, called the virtual system, is defined. Next, by using properly designed controller and estimations for the unknown parameters, the state of the virtual system is forced to follow the measured motion of the real structure. The mentioned estimations are computed from a proposed update law which depends on the measured motion of the real structure and the virtual system's state. A major theoretical novelty of this paper is a proposed convergence condition which is applicable in case of arbitrary external forces or ground acceleration. It is shown that upon the satisfaction of that condition, as the synchronization completes, the computed estimation function converges to the true value of the vector of unknown parameters. In addition, an important practical contribution presented in this study is the introduction of a technique called scale factors. It helps to use available initial guesses of the unknown parameters to improve the speed of online identification. Numerical examples show that the proposed method is promising and has a good performance in both online identification and online damage detection problems.
机译:在本文中,提出了一种新的在线参数识别和在经受任意地震激发的智能建筑结构中的造成损坏检测方法。它使用结构运动的实时测量来识别其未知常数或分段恒定参数,例如刚度,阻尼和质量。该方法基于系统同步和自适应控制理论的元素。首先,定义了一个称为虚拟系统的计算系统。接下来,通过使用适当设计的控制器和未知参数的估计,虚拟系统的状态被迫遵循真实结构的测量运动。所提到的估计是从建议的更新法计算的,这取决于实际结构的测量运动和虚拟系统的状态。本文的主要理论新颖性是一个提出的会聚条件,适用于任意外力或地面加速。结果表明,在该条件满足时,随着同步完成的情况下,计算的估计函数会聚到未知参数的矢量的真实值。此外,本研究中提出的一个重要的实际贡献是引入一种称为比例因子的技术。它有助于使用未知参数的可用初始猜测来提高在线识别的速度。数值例子表明,该方法在线识别和在线损害检测问题方面具有很好的性能。

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