Vibration and dissipation in vibro-acoustic systems can be assessed using frequency response analysis. Evaluating a frequency sweep on a full-order model can be very costly, so model order reduction methods are employed to compute cheap-to-evaluate surrogates. This work compares structure-preserving model reduction methods based on rational interpolation and balanced truncation with a specific focus on their applicability to vibro-acoustic systems. Such models typically exhibit a second-order structure and their material properties as well as their excitation may be depending on the driving frequency. We show and compare the effectiveness of all considered methods by applying them to numerical models of vibro-acoustic systems depicting structural vibration, sound transmission, acoustic scattering, and poroelastic problems.
翻译:可以通过频率反应分析来评估振动和振荡振动。评价全顺序模型的频率扫瞄可能非常昂贵,因此采用减少订单的模型方法来计算廉价至评价的代孕。这项工作比较了基于合理内插和平衡脱轨的结构保护模型的减少方法,并具体侧重于对振动声系统的适用性。这些模型通常显示二阶结构及其物质特性,以及其引力可能取决于驱动频率。我们通过将这些方法应用于描述结构振动、声传导、声波散射和浮标问题的振动-声波-声波系统的数字模型,来显示和比较所有考虑过的方法的有效性。