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ROC analysis-based optimal design of a spatio-temporal online seismic monitoring system for precast industrial buildings

机译:基于ROC分析的预制工业建筑的时空网上地震监测系统的最优设计

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The aim of this work is to propose an efficient tool for the design of the monitoring system of precast reinforced concrete industrial buildings in seismic hazard zones, enabling the rapid post-earthquake damage assessment. The methodology, designated as spatio-temporal online monitoring (STOM) is performed by analyzing data obtained from a set of bi-directional accelerometers integrated in smart columns within the building. Acceleration records are converted into inter-story drift ratio (IDR) data, designated as engineering demand parameters, by double integration. Then, calculated IDRs are compared to three levels of alert thresholds meaning that, for the selected damage state, the structure is classified as apparently safe, restricted use or unsafe, corresponding to slight damage, moderate damage and severe damage. Finally, the STOM results trigger visual inspections, thus representing the main inputs needed by engineers in order to evaluate the structural health status and eventually decide for further actions. Measurements data are collected across time as well as space to ensure greater robustness and effectiveness. The STOM methodology allows the preliminary design, i.e., number and location of sensors and optimal demand thresholds, by exploiting the receiver operating characteristics (ROC) analysis, which classifies the different options on the basis of their performance in reporting true damage scenarios with respect to false alarms. Hence, seismic monitoring data are used in conjunction with the pre-evaluated alert states as an engineering decision-support tool for the post-earthquake diagnosis of the structure.
机译:这项工作的目的是为地震危险区预制钢筋混凝土工业建筑监测系统的设计提供一种有效的工具,从而实现快速的震后损伤评估。这种被称为时空在线监测(STOM)的方法是通过分析从建筑物内智能柱中集成的一组双向加速度计获得的数据来执行的。加速度记录通过双重积分转换为层间漂移率(IDR)数据,指定为工程需求参数。然后,将计算出的IDR与三个级别的警报阈值进行比较,这意味着,对于选定的损伤状态,结构分为明显安全、限制使用或不安全,对应于轻微损伤、中度损伤和严重损伤。最后,STOM结果触发目视检查,从而代表工程师所需的主要输入,以评估结构健康状态,并最终决定采取进一步行动。测量数据跨时间和空间收集,以确保更高的稳健性和有效性。STOM方法通过利用接收器工作特性(ROC)分析,允许进行初步设计,即传感器的数量和位置以及最佳需求阈值。ROC分析根据不同选项在报告与假警报有关的真实损坏情况时的性能对其进行分类。因此,地震监测数据与预先评估的警报状态结合使用,作为结构震后诊断的工程决策支持工具。

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