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Damping estimation using free decays and ambient vibration tests

机译:使用自由衰减和环境振动测试进行阻尼估计

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This paper studies the quality of modal damping ratios estimates based on ambient and free vibration tests using both numerical simulations and data collected on large Civil Engineering structures where both tests were performed. The simulated data allowed to study the influence of factors like non-proportional damping or proximity of natural frequencies on the quality of the estimates and also to illustrate the influence of the identification algorithms parameters on the accuracy of the results. The analysis of data collected on a cable-stayed bridge, on the suspended roof of a stadium and on a footbridge permitted to compare the results of both testing approaches in real applications where some factors that cannot be realistically included in the numerical simulations can play an important role. The processing of ambient vibration responses is performed with two output-only identification approaches: frequency domain decomposition and stochastic subspace identification methods. The numerically simulated and the measured free decays were analyzed with a simple method based on filters and fitting of exponential decays and also with the use of subspace models.
机译:本文使用数值模拟和在大型土木工程结构中进行了这两项测试的数据,研究了基于环境和自由振动测试的模态阻尼比估算值的质量。仿真数据可以研究非比例阻尼或自然频率接近度等因素对估计质量的影响,还可以说明识别算法参数对结果准确性的影响。通过对斜拉桥,体育场吊顶和人行桥上收集的数据进行分析,可以比较实际应用中两种测试方法的结果,而在实际应用中,数值模拟中无法实际包含的某些因素可能会起到一定的作用。重要角色。使用两种仅输出的识别方法来执行环境振动响应的处理:频域分解和随机子空间识别方法。使用基于滤波器和指数衰减拟合的简单方法以及子空间模型,对数值模拟和测得的自由衰减进行了分析。

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