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Designing auxiliary systems for the inverse eigenstructure assignment in vibrating systems

机译:设计振动系统中本征结构逆分配的辅助系统

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The inverse eigenstructure assignment aims at computing the mass and stiffness parameters, leading to the desired dynamic behaviour expressed in terms of some desired eigenpairs. Attention in the literature has been usually paid to the modification of the mass and stiffness parameters of the original system. In contrast, it often occurs that the elastic and inertial parameters cannot be directly modified. To solve this issue, this paper proposes a method based on the addition of auxiliary systems made by masses and springs with arbitrary, but pre-defined, topology. The eigenstructure assignment problem is cast as an optimization problem solved numerically through a homotopy-based approach, in order to overcome the presence of some bilinear terms in the objective function and to boost the convergence to a global minimum. The use of some auxiliary variables and the McCormick's relaxation of the bilinear terms are also employed as effective tools to obtain useful modifications of the primary system itself, whenever allowed. Numerical validation is provided to show the method effectiveness.
机译:本征结构逆分配旨在计算质量和刚度参数,从而得出以某些所需特征对表示的所需动态行为。通常已经在文献中关注原始系统的质量和刚度参数的修改。相反,经常发生的是,弹性和惯性参数不能直接修改。为了解决这个问题,本文提出了一种方法,该方法基于添加由质量和弹簧组成的具有任意但预定义拓扑的辅助系统。本征结构分配问题被视为通过基于同伦的方法在数值上求解的优化问题,以克服目标函数中某些双线性项的存在并将收敛性提高到全局最小值。只要允许,一些辅助变量的使用以及双线性项的McCormick松弛也可以用作有效的工具,以便在允许的情况下获得对初级系统本身的有用修改。数值验证显示了该方法的有效性。

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