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首页> 外文期刊>Journal of Sound and Vibration >Propagation of uncertainty in test-analysis correlation of substructured spacecraft
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Propagation of uncertainty in test-analysis correlation of substructured spacecraft

机译:子结构航天器测试分析相关性中不确定性的传播

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摘要

Organizations, such as the Air Force and NASA make critical decisions on spacecraft performance and survivability based on the results of test-analysis correlation metrics. In order to ensure the success of a new paradigm in finite element model validation where there is no system level test, uncertainty in the substructures must be propagated into the system level correlation metrics. The objective of this work is to quantify the level of accuracy required at the substructure level to produce acceptable analytical model accuracy at the system level. In preparation for future synthesized system level uncertainty analysis, a framework is presented for propagating analytical model uncertainty from a fixed interface Craig-Bampton substructure representation into a free-free substructure. Model uncertainty is parameterized in terms of test- or truth-analysis correlation metrics that are dictated by the Air Force. A statistical model is presented for these correlation metrics such that an analyst can specify a covariance matrix for uncertainty in model correlation at the fixed substructure level, and then propagate it into correlation uncertainty at the free substructure level. Development of the forward propagation approach then allows propagation of correlation uncertainty in the reverse direction from the free substructure into the fixed interface based Craig-Bampton representation. The proposed methods are applied to a typical spacecraft representation.
机译:空军和NASA等组织根据测试分析相关性指标的结果,对航天器的性能和生存能力做出重要决策。为了确保没有系统级测试的有限元模型验证中新范式的成功,必须将子结构中的不确定性传播到系统级相关度量中。这项工作的目的是量化子结构级别所需的准确性级别,以在系统级别产生可接受的分析模型准确性。在为将来的综合系统级不确定性分析做准备时,提出了一个框架,用于将分析模型的不确定性从固定接口Craig-Bampton子结构表示传播为自由子结构。模型不确定性是根据空军规定的测试或真相分析相关性参数进行参数化的。针对这些相关度量提供了统计模型,以便分析人员可以为固定子结构级别的模型相关性的不确定性指定协方差矩阵,然后将其传播为自由子结构级别的相关性不确定性。然后,向前传播方法的发展允许相关不确定性从自由子结构向反向传播到基于Craig-Bampton表示的固定接口中。所提出的方法被应用于典型的航天器表示。

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