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Damage Identification and Optimal Sensor Placement for Structures under Unknown Traffic-Induced Vibrations

机译:未知交通诱导振动下结构的损伤识别和传感器最佳布置

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This paper proposes a damage-identification and optimal sensor-placement approach for structures under unknown traffic-induced vibrations. Response reconstruction is performed for structures under traffic-induced vibrations to formulate the relationship between different sets of time-domain responses. Measured acceleration responses from a structure under traffic-induced ground motions are used for damage identification with a sensitivity-based iterative model updating method. Numerical simulations on a seven-story planar frame structure are conducted to verify the performance of the proposed approach. Damage identification is conducted based on the initial finite-element model of the structure and the measured responses from the damaged state under traffic-induced vibrations. Structural elemental stiffness factors are iteratively updated until the reconstructed responses match the measured ones as closely as possible. A two-phase optimal sensor-placement scheme is proposed for better response reconstruction and subsequent damage identification. Optimal sensor placement is investigated to identify the best locations for response reconstruction and sensitivity-based damage identification. With the use of optimal sensor locations, the introduced damages can be identified effectively and accurately with nearly exact damage severity estimation and very small false positives and false negatives under a 5% noise effect. (C) 2015 American Society of Civil Engineers.
机译:本文提出了未知交通诱导振动下结构的损伤识别和最优传感器放置方法。在交通引起的振动下对结构进行响应重建,以表达不同时域响应集之间的关系。在基于交通诱导的地面运动的情况下,从结构测得的加速度响应用于基于灵敏度的迭代模型更新方法的损伤识别。进行了七层平面框架结构的数值模拟,以验证所提出方法的性能。基于结构的初始有限元模型以及在交通诱导的振动条件下对损坏状态的测量响应,进行损伤识别。迭代更新结构单元的刚度因子,直到重建的响应与测量的响应尽可能接近。提出了一种两阶段最优传感器放置方案,以更好地进行响应重建和随后的损伤识别。研究了传感器的最佳放置位置,以确定用于响应重建和基于灵敏度的损坏识别的最佳位置。通过使用最佳传感器位置,可以通过几乎精确的损坏严重程度估算以及在5%噪声影响下非常小的假阳性和假阴性来有效,准确地识别引入的损坏。 (C)2015年美国土木工程师学会。

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