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System Identification of Burbank Six-Story Building Using Earthquake Data

机译:利用地震数据系统识别Burbank六层建筑

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This paper examines the problem of identifying the dynamic characteristics of an instrumented building using an input-output system identification method. The building studied was a six-story steel moment-resisting frame (SMRF) instrumented by the California Strong Motion Instrumentation Program (CSMIP). The building was shaken by several earthquakes and strong motion data of the building response was recorded during these earthquakes and were made available through SMIP. In particular the Whittier Narrows (October, 1987), the Sierra Madre (June, 1991) and the Northridge (January, 1994) earthquakes were considered in the studies reported here. The seismic performance of steel moment-framed buildings has been of particular interest after the 1994 Northridge earthquake because brittle fractures were discovered at the beam-column connection. The Eigensystem Realization Algorithm with Data Correlation (ERA/DC) and Observer/Kalman filter Identification (OKID) were used in these studies for system identification purposes. The identified modal properties of the structure were compared and verified with the spectral analysis of the response of the structure excited by three different earthquakes.
机译:本文介绍了使用输入输出系统识别方法识别仪表建筑物的动态特性的问题。研究的建筑是由加利福尼亚强大的运动仪表计划(CSMIP)仪表的六层钢芯抵抗框架(SMRF)。该建筑物被几次地震所震动,在这些地震期间记录了建筑物反应的强大运动数据,并通过SMIP提供。特别是惠迪尔叙事(1987年10月),Sierra Madre(1991年6月)和Northridge(1994年1月)在这里考虑的研究中被考虑了地震。在1994年诺德里奇地震后,钢时刻框架建筑的地震性能特别感兴趣,因为在梁柱连接处发现了脆性骨折。使用数据相关性(ERA / DC)和观察者/卡尔曼滤波器识别(OKID)的EIGensystem实现算法用于系统识别目的。比较了结构的鉴定模态性质,并通过三种不同地震激发的结构的响应的光谱分析来进行了验证。

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