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A reduced order, test verified component mode synthesis approach for system modeling applications

机译:用于系统建模应用程序的经过简化的,经过测试验证的组件模式综合方法

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Component mode synthesis (CMS) is a very common approach used for the generation of large system models. In general, these modeling techniques can be separated into two categories: those utilizing a combination of constraint modes and fixed interface normal modes and those based on a combination of free interface normal modes and residual flexibility terms. The major limitation of the methods utilizing constraint modes and fixed interface normal modes is the inability to easily obtain the required information from testing; the result of this limitation is that constraint mode-based techniques are primarily used with numerical models.rnAn alternate approach is proposed which utilizes frequency and shape information acquired from modal testing to update reduced order finite element models using exact analytical model improvement techniques. The connection degrees of freedom are then rigidly constrained in the test verified, reduced order model to provide the boundary conditions necessary for constraint modes and fixed interface normal modes.rnThe CMS approach is then used with this test verified, reduced order model to generate the system model for further analysis. A laboratory structure is used to show the application of the technique with both numerical and simulated experimental components to describe the system and validate the proposed approach.rnActual test data is then used in the approach proposed. Due to typical measurement data contaminants that are always included in any test, the measured data is further processed to remove contaminants and is then used in the proposed approach. The final case using improved data with the reduced order, test verified components is shown to produce very acceptable results from the Craig-Bampton component mode synthesis approach.rnUse of the technique with its strengths and weaknesses are discussed.
机译:组件模式综合(CMS)是用于生成大型系统模型的非常常用的方法。通常,这些建模技术可以分为两类:利用约束模式和固定接口常规模式的组合的技术,以及基于自由接口常规模式和剩余灵活性项的组合的技术。利用约束模式和固定接口普通模式的方法的主要局限性是无法轻松地从测试中获得所需的信息。这种限制的结果是基于约束模式的技术主要用于数值模型。提出了另一种方法,该方法利用从模态测试获得的频率和形状信息,使用精确的分析模型改进技术来更新降阶有限元模型。然后,将连接自由度严格限制在经过测试验证的降阶模型中,以提供约束模式和固定接口法向模式所需的边界条件。然后,将CMS方法与经过测试验证的降阶模型一起使用以生成系统模型进行进一步分析。使用实验室结构来演示该技术在数值和模拟实验组件上的应用,以描述系统并验证所提出的方法。然后在所提出的方法中使用实际测试数据。由于通常包含在任何测试中的典型测量数据污染物,因此对测量数据进行进一步处理以去除污染物,然后将其用于建议的方法中。最后的案例表明,使用经过降级的改进数据,经过测试验证的组件可以通过Craig-Bampton组件模式综合方法产生非常令人满意的结果。讨论了该技术的优缺点。

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