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Seismic reliability assessment of RC structures including soil-structure interaction using wavelet weighted least squares support vector machine

机译:小波加权最小二乘支持向量机在钢筋混凝土结构抗震可靠度评估中的作用

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摘要

An efficient metamodeling framework in conjunction with the Monte-Carlo Simulation (MCS) is introduced to reduce the computational cost in seismic reliability assessment of existing RC structures. In order to achieve this purpose, the metamodel is designed by combining weighted least squares support vector machine (WLS-SVM) and a wavelet kernel function, called wavelet weighted least squares support vector machine (WWLS-SVM). In this study, the seismic reliability assessment of existing RC structures with consideration of soil-structure interaction (SSI) effects is investigated in accordance with Performance-Based Design (PBD). This study aims to incorporate the acceptable performance levels of PBD into reliability theory for comparing the obtained annual probability of non-performance with the target values for each performance level. The MCS method as the most reliable method is utilized to estimate the annual probability of failure associated with a given performance level in this study. In WWLS-SVM-based MCS, the structural seismic responses are accurately predicted by WWLS-SVM for reducing the computational cost. To show the efficiency and robustness of the proposed metamodel, two RC structures are studied. Numerical results demonstrate the efficiency and computational advantages of the proposed metamodel for the seismic reliability assessment of structures. Furthermore, the consideration of the SSI effects in the seismic reliability assessment of existing RC structures is compared to the fixed base model. It shows which SSI has the significant influence on the seismic reliability assessment of structures.
机译:引入了有效的元建模框架,并与蒙特卡洛模拟(MCS)结合使用,以减少现有RC结构的地震可靠性评估中的计算成本。为了达到这个目的,通过结合加权最小二乘支持向量机(WLS-SVM)和小波核函数(称为小波加权最小二乘支持向量机(WWLS-SVM))来设计元模型。在这项研究中,根据基于性能的设计(PBD),研究了考虑到土-结构相互作用(SSI)效应的现有RC结构的抗震可靠性评估。这项研究旨在将PBD可接受的性能水平纳入可靠性理论,以比较获得的年度不性能概率与每个性能水平的目标值。在本研究中,MCS方法是最可靠的方法,用于估计与给定性能水平相关的年度故障概率。在基于WWLS-SVM的MCS中,WWLS-SVM可以准确预测结构的地震响应,从而降低了计算成本。为了显示所提出的元模型的效率和鲁棒性,研究了两个RC结构​​。数值结果证明了所提出的元模型在结构抗震可靠性评估中的效率和计算优势。此外,将现有钢筋混凝土结构在地震可靠性评估中对SSI效应的考虑与固定基础模型进行了比较。它显示了哪个SSI对结构的地震可靠性评估有重要影响。

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