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InSight Entry, Descent and Landing Pre-Flight Performance Predictions

机译:InSight进入,下降和着陆飞行前性能预测

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On November 26,2018, the Interior Exploration using Seismic Investigations, Geodesy and Heat Transport (InSight) lander successfully touched down on the surface of Mars. Over its seven-plus year development, NASA Langley Research Center's (LaRC) Program to Optimize Simulated Trajectories Ⅱ (POST2) was used to assess the mission's Entry, Descent and Landing (EDL) vehicle system performance against related requirements across the full range of possible environmental and spacecraft conditions. Much of the simulation code was derived from the Phoenix mission, for which this vehicle is very similar. The InSight six degree-of-freedom simulation included models for Mars atmosphere, gravity and digital elevation maps of the landing location. Additionally, vehicle specific aerodynamic, parachute, engine, navigation sensor, flight software and landing radar models were also included. A set of dispersions for each model, as well as for additional simulation input parameters, were also included in order to provide a statistical, Monte Carlo prediction of the EDL system performance. An overview of the pre-flight performance assessments completed, including the various simulation campaigns used, will be provided. Ultimately, this work was critical in the assessment of readiness for InSight launch. A brief description of the use of this simulation in support of flight operations is also discussed.
机译:2018年11月26日,使用地震勘测,大地测量学和热传输(InSight)着陆器进行的内部勘探成功着陆在火星表面。经过七年多的发展,美国宇航局兰利研究中心(LaRC)优化模拟轨迹Ⅱ(POST2)计划被用来评估任务的进,降落和着陆(EDL)车辆系统性能是否符合相关要求,包括所有可能的范围。环境和航天器条件。许多仿真代码来自Phoenix任务,而这辆车与此非常相似。 InSight的六自由度仿真包括火星大气层,重力和着陆位置的数字高程图的模型。此外,还包括特定于车辆的空气动力学,降落伞,发动机,导航传感器,飞行软件和着陆雷达模型。还包括每个模型的一组色散以及其他仿真输入参数,以便提供EDL系统性能的统计蒙特卡洛预测。将提供已完成的飞行前绩效评估的概述,包括所使用的各种模拟活动。最终,这项工作对于评估InSight启动准备情况至关重要。还讨论了此模拟在支持飞行操作中的使用的简要说明。

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