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A vibration-based structural damage detection method and its applications to engineering structures

机译:基于振动的结构损伤检测方法及其在工程结构中的应用

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Two major challenges associated with avibration-based damage detection method using changes in natural frequencies are addressed: accurate modeling of structures and the development of a robust inverse algorithm to detect damage, which are defined as the forward and inverse problems, respectively. To resolve the forward problem, new physics-based finite element modeling techniques are developed for fillets in thin-walled beams and for bolted joints, so that complex structures can be accurately modeled with a reasonable model size. To resolve the inverse problem, a logistic function transformation is introduced to convert the constrained optimization problem to an unconstrained one, and a robust iterative algorithm using the Levenberg-Marquardt method is developed to accurately detect the locations and extent of damage. The new methodology can ensure global convergence of the iterative algorithm in solving under-determined system equations and deal with damage detection problems with relatively large modeling error and measurement noise. It is applied to various engineering structures including lightning masts, a space frame structure and one of its components, and a pipeline. The exact locations and extent of damage can be detected in the numerical simulation, and the locations and extent of damage can be successfully detected in experimental damage detection.View full textDownload full textKeywordsnatural frequency, forward problem, inverse problem, Levenberg-Marquardt method, logistic function transformationRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/19475411.2011.594105
机译:解决了与使用自然频率变化的基于振动的损伤检测方法相关的两个主要挑战:结构的精确建模和开发用于检测损伤的鲁棒逆算法的开发,分别定义为正向和逆向问题。为了解决前向问题,开发了新的基于物理学的有限​​元建模技术,用于薄壁梁的圆角和螺栓连接,从而可以用合理的模型尺寸精确地建模复杂的结构。为了解决逆问题,引入了逻辑函数变换将约束优化问题转换为无约束问题,并开发了使用Levenberg-Marquardt方法的鲁棒迭代算法来准确检测损坏的位置和程度。新方法可以确保迭代算法在求解欠定系统方程中具有全局收敛性,并且可以解决建模误差和测量噪声较大的损伤检测问题。它适用于各种工程结构,包括避雷针,空间框架结构及其组件之一和管道。可以在数值模拟中检测出确切的损坏位置和程度,并可以在实验性损坏检测中成功检测到损坏的位置和程度。查看全文下载全文关键字自然频率,正向问题,反问题,Levenberg-Marquardt方法,逻辑功能转换相关的var addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,servicescompact:“ citlikelike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/19475411.2011.594105

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