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Transmissibility-based system identification for structural health Monitoring: Fundamentals, approaches, and applications

机译:用于结构健康监测的基于可传递性的系统标识:基本原理,方法和应用

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摘要

The difficulty of achieving controlled input has led to the development of new output-only structural health monitoring (SHM) approaches. Without measuring the input or assuming a specific input model, a transmissibility function (TF) as a mathematical representation of the output-to-output relationship has proven to be an attractive tool in SHM. The state of the art and challenges to TF analysis that cast SHM in the context of a system identification (SI) paradigm are reviewed and discussed in this study. This review starts with an overview of the fundamentals of TFs by illustrating its categories, connections with frequency response functions (FRFs), and basic properties. By categorizing TFs as local and global, this literature review limits the practice of various methodologies to the following key aspects: modal analysis, damage detection, and model updating. A brief treatment of the basic ideas is presented while a comprehensive and critical explanation of their contents is not attempted. Based on the review, existing studies are discussed, highlighting gaps requiring additional work and possible future trends for TF-based system identification. (C) 2018 Elsevier Ltd. All rights reserved.
机译:实现受控输入的困难导致开发了新的仅输出结构健康监视(SHM)方法。在不测量输入或假设特定输入模型的情况下,传输能力函数(TF)作为输出与输出关系的数学表示已被证明是SHM中有吸引力的工具。在这项研究中,我们回顾并讨论了在系统识别(SI)范式的背景下转换SHM的最新技术和TF分析的挑战。本文通过对TF的类别,与频率响应函数(FRF)的连接以及基本属性的概述开始,对TF的基本原理进行了概述。通过将TF分为本地和全局分类,本文献综述将各种方法的实践限于以下关键方面:模态分析,损坏检测和模型更新。本文对基本概念进行了简要的介绍,而没有试图对它们的内容进行全面而批判的解释。在此审查的基础上,讨论了现有研究,突出了需要进行更多工作的差距以及基于TF的系统识别可能的未来趋势。 (C)2018 Elsevier Ltd.保留所有权利。

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