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Ares I static tests design

机译:Ares I静态测试设计

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摘要

Probabilistic engineering design enhances safety and reduces costs by incorporating risk assessment directly into the design process. In this paper, we assess the format of the quantitative metrics for the vehicle which will replace the Space Shuttle, the Ares I rocket. Specifically, we address the metrics for in-flight measurement error in the vector position of the motor nozzle, dictated by limits on guidance, navigation, and control systems. Analyses include the propagation of error from measured to derived parameters, the time-series of dwell points for the duty cycle during static tests, and commanded versus achieved yaw angle during tests. Based on these analyses, we recommend a probabilistic template for specifying the maximum error in angular displacement and radial offset for the nozzle-position vector. Criteria for evaluating individual tests and risky decisions also are developed.
机译:概率工程设计通过将风险评估直接纳入设计过程来提高安全性并降低成本。在本文中,我们评估了车辆量化指标的格式,该量化指标将取代“航天飞机” Ares I火箭。具体来说,我们解决了由导引,导航和控制系统的限制所决定的,电机喷嘴矢量位置的飞行中测量误差的度量标准。分析包括从测量参数到导出参数的误差传播,静态测试期间占空因数的驻留时间序列,以及测试期间指令与已实现的偏航角之间的关系。基于这些分析,我们建议一个概率模板,用于指定喷嘴位置矢量的角位移和径向偏移的最大误差。还制定了评估单个测试和风险决策的标准。

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