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首页> 外文期刊>Mechanical systems and signal processing >Full Dynamic Compound Inverse Method for seismic output- only element-level and input identification: Unitary formulation and extensive validation
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Full Dynamic Compound Inverse Method for seismic output- only element-level and input identification: Unitary formulation and extensive validation

机译:用于仅地震输出元素级别和输入识别的全动态复合逆方法:统一表述和广泛验证

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摘要

The present work develops a unitary formulation of a novel deterministic output-only system identification and input estimation technique named Full Dynamic Compound Inverse Method (FDCIM) and outlines a systematic investigation on its consistent adoption within seismic engineering, by considering specific aspects of Signal Processing and producing a complete statistical evaluation. The achieved comprehensive FDCIM technique successfully estimates, all together: modal properties, element-level structural characteristics and earthquake input time history. Here, previous detached seminal contributions are first rejoined, in order to deal with various forms of structural viscous damping. Then, a wide database of ten selected real seismic excitations is taken into account to generate a set ofsyntheticearthquake-induced structural response signals, from a benchmark low-rise three-storey shear-type frame and from a realistic mid-rise ten-storey building. Such synthetic signals, possibly affected by noise of a controlled amount, are successfully processed via FDCIM and the achieved results demonstrate, as a first necessary validation condition, the consistency of the present identification algorithm toward potential Structural Health Monitoring purposes within the earthquake engineering range. Finally, a closing validation is proposed with the use ofrealearthquake-induced response signals, from an instrumented case study out of the CESMD database, with rather promising identification outcomes.
机译:本工作开发了一种称为全动态复合逆方法(FDCIM)的新型确定性仅输出系统识别和输入估计技术的统一表述,并通过考虑信号处理和信号处理的特定方面,概述了其在地震工程中的持续采用的系统研究。进行完整的统计评估。所获得的综合FDCIM技术可以成功地一起估算:模态特性,单元级结构特征和地震输入时程。在这里,先前的独立精益贡献首先被重新结合,以应对各种形式的结构粘性阻尼。然后,考虑到一个由十个选定的真实地震激励组成的广泛数据库,以从基准低层三层剪力框架和一幢现实中层十层建筑中生成一组合成地震诱发的结构响应信号。通过FDCIM成功处理了此类可能受受控量噪声影响的合成信号,并且获得的结果证明,作为第一个必要的验证条件,本识别算法在地震工程范围内对潜在的结构健康监测目的的一致性。最后,通过使用真实地震诱发的响应信号(从CESMD数据库中进行的仪器化案例研究),提出了封闭验证,并给出了很有希望的识别结果。

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