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contributor authorXiaoshu Gao
contributor authorMenghui Chen
contributor authorCheng Chen
contributor authorTong Guo
contributor authorWeijie Xu
contributor authorKarlel Cornejo
date accessioned2022-08-18T12:31:04Z
date available2022-08-18T12:31:04Z
date issued2022/07/09
identifier other%28ASCE%29ST.1943-541X.0003451.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4286741
description abstractReal-time hybrid simulation (RTHS) provides an efficient and effective experimental technique for rate-dependent energy-dissipation devices in seismic hazard mitigation. The structure under investigation is generally divided into analytical and physical substructures to enable large-scale experiments for system behavior. Accurate modeling of analytical substructures is critical for truthful structural response replication through RTHS. This presents challenges to laboratory practice of RHTS such as capability of specialized finite-element software to replicate complex nonlinear behavior, and the equipment capacity to accommodate large-scale finite-element modeling to be executed in a real-time manner. This study explores the use of a polynomial chaos nonlinear autoregressive with exogenous input (PC-NARX) model to conduct RTHS in laboratories using existing equipment and general-purpose finite-element analysis (FEA) software readily available in earthquake engineering research. The NARX model can be trained using any existing FEA software for a good representation of structural dynamics. Polynomial chaos expansion (PCE) is then introduced to surrogate NARX model coefficients to account for ground motion uncertainties. Laboratory tests of a self-centering viscous damper were conducted as proof of concept to experimentally demonstrate the effectiveness of RTHS with PC-NARX metamodeling approach. The results were further compared with the kriging surrogate technique for NARX model coefficients to explore a better technique to account for uncertainties in RTHS.
publisherASCE
titleReal-Time Hybrid Simulation with Polynomial Chaos NARX Modeling for Seismic Response Evaluation of Structures Subjected to Stochastic Ground Motions
typeJournal Article
journal volume148
journal issue9
journal titleJournal of Structural Engineering
identifier doi10.1061/(ASCE)ST.1943-541X.0003451
journal fristpage04022138
journal lastpage04022138-15
page15
treeJournal of Structural Engineering:;2022:;Volume ( 148 ):;issue: 009
contenttypeFulltext


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