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Detection of abrupt structural damage induced by an earthquake using a moving time window technique

机译:使用移动时间窗技术检测地震引起的突然结构破坏

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摘要

This paper presents a time domain system identification (SI) scheme for detection of sudden structural damage that occurs during an earthquake. A moving time window technique is proposed to trace abrupt changes in the structural parameters caused by sudden damage. The time window represents a finite time interval, in which the SI procedures are performed assuming time-invariant system parameters. As the time window moves forward, the variation of system parameters in time is identified. The error function is defined as the time integral of the squared errors between measured accelerations and calculated accelerations by a mathematical model. Structural damping is approximated by the Rayleigh damping model, and damping properties as well as stiffness properties of a structure are considered as system parameters. A regularization technique is adopted to alleviate the ill-posed characteristics of SI problems. In the formulation of a new regularization function in time domain, a weighting factor is introduced to balance the relative regularization effect between stiffness and damping parameters. A truncated singular value decomposition scheme is applied to impose the regularization function on the minimization of the error function. Numerical simulation studies are presented to demonstrate the validity of the proposed method.
机译:本文提出了一种时域系统识别(SI)方案,用于检测地震中发生的突然的结构破坏。提出了一种移动时间窗口技术来追踪突然损坏引起的结构参数的突然变化。时间窗口代表一个有限的时间间隔,在该时间间隔中,SI过程是在假设时间不变的系统参数的情况下执行的。随着时间窗口的向前移动,系统参数随时间的变化得以识别。误差函数定义为通过数学模型测得的加速度与计算出的加速度之间的平方误差的时间积分。结构阻尼通​​过瑞利阻尼模型近似,并且结构的阻尼特性和刚度特性被视为系统参数。采用正则化技术来减轻SI问题的不适定特征。在时域中制定新的正则化函数时,引入了一个权重因子以平衡刚度和阻尼参数之间的相对正则化效果。应用截断的奇异值分解方案将正则化函数强加到误差函数的最小化上。数值模拟研究表明该方法的有效性。

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