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Excitation Considerations for Attractor Property Analysis in Vibration Based Damage Detection

机译:基于振动损伤检测中的吸引物特性分析的激励考虑因素

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In past work, we have presented a methodology for vibration based damage detection derived from the characterization of changes in the geometric properties of the time domain response of a structure. In brief, input forcing signals and output response signals can be transformed into state space geometrical representations. When allowed to evolve to a steady state, the geometric object is called an attractor. Certain properties of the attractor, such as the local variance of neighborhoods of points or prediction errors between attractors, have been shown to correlate directly with damage. While most inputs will generate some type of attracting geometric object, prescribing a low dimensional input, forcing signal helps to maintain a low dimensional output signal which in turn simplifies the calculation of attractor properties. Work to date has incorporated the use of a chaotic input forcing signal based on its low dimensionality yet useful frequency content. In this work we evaluate various forms of shaped noise as alternative effectively low dimensional inputs. We assess whether the intrinsic properties of the chaotic input leads to better damage detection capabilities than various shaped noise inputs. The experimental structure considered is a thin plate with weld line damage.
机译:在过去的工作中,我们介绍了一种用于振动的损伤检测方法,该方法从结构的时域响应的几何特性的变化的表征源。简而言之,输入强制信号和输出响应信号可以转换为状态空间几何表示。当允许进化到稳定状态时,几何对象称为吸引子。吸引子的某些特性,例如吸引子之间的点或预测误差的局部局部变化,已经显示出直接与损坏相关。虽然大多数输入将产生某种类型的吸引几何物体,但是规定低尺寸输入,强制信号有助于维持低尺寸输出信号,这反过来简化了吸引物性能的计算。迄今为止的工作已经纳入了基于其低维度且有用的频率内容的混沌输入强制信号。在这项工作中,我们将各种形式的形状的形状的形状,作为替代的有效性低维输入。我们评估混沌输入的内在特性是否导致比各种形状的噪声输入更好地损坏检测能力。考虑的实验结构是薄板,焊接线损坏。

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