The analysis of sound and vibrations is often performed in the frequency domain, implying the assumption of steady-state behaviour and time-harmonic excitation. External excitations, however, may be transient rather than time-harmonic, requiring time-domain analysis. Some material properties, e.g.\ often used to represent for damping treatments, are still described in the frequency domain, which complicates simulation in time. In this paper, we present a method for the linearization of finite element models with nonlinear frequency dependencies. The linearization relies on the rational approximation of the finite element matrices by the AAA method. We introduce the Extended AAA method, which is classical AAA combined with a degree two polynomial term to capture the second order behaviour of the models. A filtering step is added for removing unstable poles.
翻译:对声音和振动的分析往往在频率域进行,这意味着假定稳定状态行为和时间调和振动。但外部引力可能是短暂的,而不是时间-调和,需要时间-域分析。一些物质属性,例如经常用来代表阻断处理的特性,仍然在频率域中描述,这种特性使模拟在时间上变得复杂。在本文中,我们提出了一个非线性频率依赖的有限元素模型线性化方法。线性化取决于AAAA方法对有限元素矩阵的合理近似。我们采用了扩展 AAAAA方法,这是古典AAAA, 结合一个程度为两个多角度的术语,以捕捉模型的第二顺序行为。为了消除不稳定极,我们增加了一个过滤步骤。