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Excitation Design For Damage Detection Using Iterative Adjoint-based Optimization-part 2: Experimental Demonstration

机译:基于迭代伴随的优化的损伤检测励磁设计-第2部分:实验演示

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摘要

The iterative, adjoint-based excitation optimization technique developed in Part 1 is evaluated on an experimental structure consisting of a non-linear cantilever beam. The developed technique is shown to be effective at producing excitations which significantly improve the detectability of damage relative to two different "naive" excitations (a random input and a chirp). The technique is also demonstrated to be effective across multiple damage levels. In addition, by formulating a second-order version of the adjoint problem, it is shown that the terms needed to solve the associated adjoint equation are readily available from many commercially available finite element packages, which further enhances the usability of the technique.
机译:在第1部分中开发的基于伴随的迭代激励优化技术,是在由非线性悬臂梁组成的实验结构上进行评估的。相对于两个不同的“原始”激励(随机输入和线性调频),已开发的技术显示出可有效地产生激励,从而显着提高了损伤的可检测性。还证明了该技术在多种伤害级别上均有效。另外,通过制定伴随问题的二阶形式,表明解决关联的伴随方程所需的项可以从许多可商购的有限元软件包中容易地获得,这进一步增强了该技术的可用性。

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