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A well-conditioned technique for solving the inverse problem of boundary traction estimation for a constrained vibrating structure

机译:一种条件良好的技术,用于解决约束振动结构的边界牵引力估计反问题

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摘要

Estimation of the frequency and spatial dependent boundary traction vector from measured vibration responses in a vibrating structure is addressed. This problem, also referred to as the inverse problem, may in some circumstances be ill-conditioned. Here a technique to overcome the ill-conditioning is proposed. A subset of a set of available eigenmodes is chosen such that the problem becomes well-conditioned enough. It is shown that the ill-conditioning originates from the fact that not all eigenmodes are orthogonal over the surface where the traction vector is sought. Consequently, by choosing a set of eigenmodes orthogonal over the surface of interest, the problem becomes well-conditioned. The calculated traction vector is shown to converge to the true one in the sense of a L2-norm on the boundary of the body. The proposed technique is verified, using numerical simulation of measured responses, with good agreement.
机译:提出了根据振动结构中测得的振动响应估算频率和空间相关的边界牵引向量的方法。在某些情况下,此问题(也称为反问题)可能会变得不适。这里提出了一种克服不适的技术。选择一组可用特征模式的子集,以使问题变得足够好的条件。结果表明,不良状况源自并非所有本征模在寻求牵引向量的表面上都是正交的事实。因此,通过选择在感兴趣表面上正交的一组本征模,该问题变得很好解决。在人体边界上的L2范数的意义上,计算出的牵引力矢量已收敛到真实值。使用测量响应的数值模拟验证了所提出的技术,具有良好的一致性。

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