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Construction of three-dimensional orthogonal surface basis functions and well-conditioned boundary traction vector estimation

机译:三维正交表面基函数的构建和条件良好的边界牵引矢量估计

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摘要

A well-conditioned technique for the solution of the inverse problem of boundary traction estimation, in the frequency domain, from measured vibration responses on a solid structure is proposed. The technique is based on recent results regarding lack of mode orthogonality on sub-domains of the structure. This is one of the reasons that modal-based solutions to the inverse problems may be numerically ill-conditioned. Herein construction of orthogonal three-dimensional basis functions, over a sub-domain of the structure, and a well-posed model for inverse boundary traction estimation are proposed. The technique is validated on a three-dimensional example using direct FE-calculated responses as simulation of measured responses with very good results.
机译:提出了一种很好的条件技术,用于根据实地结构上的实测振动响应在频域中解决边界牵引力估计的反问题。该技术基于关于结构子域上缺乏模式正交性的最新结果。这是基于模态的反问题解决方案可能会出现数字病的原因之一。这里,提出了在结构的子域上的正交三维基函数的构造,以及提出了用于逆边界牵引力估计的恰当模型。该技术在三维示例中得到了验证,该示例使用直接有限元计算的响应作为测量响应的模拟,具有很好的结果。

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