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Spacecraft base-sine vibration test data uncertainties investigation based on stochastic scatter approach

机译:基于随机散射法的航天器基正弦振动测试数据不确定性调查

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This article describes some results of the study "DYNAMITED". The study is funded by the European Space Agency (ESA) and performed by a consortium of European industries and university, led by EADS Astrium Satellites. One of the main objectives of the study is to assess and quantify the uncertainty in the spacecraft sine vibration test data. For a number of reasons as for example robustness and confidence in the notching of the input spectra and validation of the finite element model, it is important to study the effect of the sources of uncertainty on the test data including the frequency response functions and the modal parameters. In particular the paper provides an overview on the estimation of the scatter on the spacecraft dynamic response due to identified sources of test uncertainties and the calculation of a "notched" sine test input spectrum based on a stochastic methodology. By means of Monte Carlo simulation, a stochastic cloud of the output of interest can be generated and this provides an estimate of the global error on the test results. The cloud is generated by characterizing the assumed sources of test uncertainties by parameters of the structure finite element model and by quantifying the scatter of the parameters. The uncertain parameters are the input random variables of the Monte Carlo simulation. Some results on the application of the methods to telecom spacecraft sine vibration tests are illustrated.
机译:本文介绍了“动态化”研究的一些结果。这项研究由欧洲航天局(ESA)资助,由欧洲工业和大学联合体进行,由EADS Astrium卫星牵头。该研究的主要目的之一是评估和量化航天器正弦振动测试数据中的不确定性。由于多种原因,例如鲁棒性和对输入频谱的陷波和置信度的信心以及对有限元模型的验证,研究不确定性源对测试数据(包括频率响应函数和模态)的影响非常重要。参数。特别是,本文概述了由于确定的测试不确定性源而导致的航天器动态响应的散射估计以及基于随机方法的“缺口”正弦测试输入谱的计算。通过蒙特卡洛模拟,可以生成目标输出的随机云,这可以对测试结果的整体误差进行估计。通过用结构有限元模型的参数表征假定的测试不确定性来源并量化参数的离散度来生成云。不确定参数是蒙特卡洛模拟的输入随机变量。说明了将该方法应用于电信航天器正弦振动测试的一些结果。

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