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Response probability distribution of built-up vibro-acoustic systems

机译:组合式振动声系统的响应概率分布

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The vibro-acoustic response of built-up structures, consisting of stiff components with low modal density and flexible components with high modal density, is sensitive to small imperfections in the flexible components. In this paper, the uncertainty of the response is considered by modeling the low modal density master system as deterministic and the high modal density subsystems in a nonparametric stochastic way, i.e., carrying a diffuse wave field, and by subsequently computing the response probability density function. The master system's mean squared response amplitude follows a singular noncentral complex Wishart distribution conditional on the subsystem energies. For a single degree of freedom, this is equivalent to a chi-square or an exponential distribution, depending on the loading conditions. The subsystem energies follow approximately a chi-square distribution when their relative variance is smaller than unity. The results are validated by application to plate structures, and good agreement with Monte Carlo simulations is found.
机译:由低模态密度的刚性组件和高模态密度的柔性组件组成的组合结构的振动声响应对柔性组件中的小缺陷很敏感。在本文中,通过将非模态密度主系统建模为确定性模型和将高模态密度子系统建模为非参数随机方式(即携带扩散波场)并随后计算响应概率密度函数,来考虑响应的不确定性。主系统的均方响应幅度遵循以子系统能量为条件的奇异非中心复Wishart分布。对于单个自由度,这取决于加载条件,等效于卡方或指数分布。当子系统的相对方差小于一时,子系统的能量近似遵循卡方分布。通过对板结构的应用验证了结果,并且发现与蒙特卡洛模拟具有良好的一致性。

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