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Use of stochastic optimization techniques for damage detection in complex nonlinear systems

机译:随机优化技术在复杂非线性系统中的损伤检测中的应用

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In this study, the performance of stochastic optimization techniques in the finite element model updating approach was investigated for damage detection in a quarter-scale two-span reinforced concrete bridge system which was tested experimentally at the University of Nevada, Reno. The damage sequence in the structure was induced by a range of progressively increasing excitations in the transverse direction of the specimen. Intermediate non-destructive white noise excitations and response measurements were used for system identification and damage detection purposes. It is shown that, when evaluated together with the strain gauge measurements and visual inspection results, the applied finite element model updating algorithm on this complex nonlinear system could accurately detect, localize, and quantify the damage in the tested bridge columns throughout the different phases of the experiment.
机译:在这项研究中,研究了随机优化技术在有限元模型更新方法中的性能,用于四分之一比例的两跨钢筋混凝土桥梁系统的损伤检测,该系统在里诺内华达大学进行了实验测试。结构中的破坏顺序是由沿试样横向方向逐渐增加的一系列激励引起的。中间无损白噪声激励和响应测量用于系统识别和损坏检测。结果表明,与应变仪的测量结果和外观检查结果一起评估时,在这个复杂的非线性系统上应用的有限元模型更新算法可以准确地检测,定位和量化测试桥梁桥在不同阶段的损伤。本实验。

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