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Model Updating Using Shape Descriptors from Full-Field Images

机译:模型使用全场图像使用形状描述符更新

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The comparison of structural responses (natural frequencies, mode shapes or strain maps) between predictions and measurements is an important step in finite element (FE) model updating. Full-field measurement techniques such as digital image correlation (DIC) provide detailed, global displacement data. It is necessary to compress huge amounts of full-field data before implementing the comparison procedures. Image decomposition using orthogonal kernel functions is one of the most common approaches. Appropriate selection or construction of the kernels generates shape feature terms capable of accurate image reproduction. Thus, the discrepancies between data and FE predictions may be assessed by using distance measures between the shape feature vectors. Two examples of model updating using shape features are described. In the first example vibration mode shapes of a composite panel from a structure to be deployed in outer space are measured by a DIC system. FE model updating is carried out using natural frequencies and Tchebichef moment descriptors. In the second example a square plate with a circular hole subject to a uniaxial tensile load is considered. Model updating of nonlinear elasto-plastic material properties is carried out using modified Zernike moment descriptors.
机译:预测和测量之间的结构响应(自然频率,模式形状或应变映射)的比较是有限元(FE)模型更新的重要步骤。全场测量技术,例如数字图像相关(DIC)提供了详细的全局位移数据。在实现比较程序之前,有必要压缩大量的全场数据。使用正交内核功能的图像分解是最常见的方法之一。 Appropriate selection or construction of the kernels generates shape feature terms capable of accurate image reproduction.因此,可以通过使用形状特征向量之间的距离测量来评估数据和FE预测之间的差异。描述了使用形状特征进行模型更新的两个示例。在第一示例性振动模式中,通过DIC系统测量从要部署在外空间中的结构的复合面板的形状。 FE模型更新使用自然频率和Tchebichef矩描述符进行。在第二示例中,考虑在具有受单轴拉伸负荷的圆形孔的方形板被认为是由单轴拉伸载荷的圆形孔。使用改进的Zernike矩形描述符进行非线性弹性塑料材料特性的模型更新。

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