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Comparison of the Effects of Velocity and Range Triggers on Trajectory Dispersions for the Mars 2020 Mission

机译:速度和距离触发对火星2020任务弹道分散的影响比较

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Mars 2020, the next planned U.S. rover mission to land on Mars, is based on the design of the successful 2012 Mars Science Laboratory (MSL) mission. Mars 2020 retains most of the entry, descent, and landing (EDL) sequences of MSL, including the closed-loop entry guidance scheme based on the Apollo guidance algorithm. However, unlike MSL, Mars 2020 will trigger the parachute deployment and descent sequence on range trigger rather than the previously used velocity trigger. This difference will greatly reduce the landing ellipse sizes. Additionally, the relative contribution of each models to the total ellipse sizes have changed greatly due to the switch to range trigger. This paper considers the effect on trajectory dispersions due to changing the trigger schemes and the contributions of these various models to trajectory and EDL performance.
机译:2020年火星计划是美国计划的下一个登陆火星的任务,它基于成功的2012年火星科学实验室(MSL)任务的设计。火星2020保留了MSL的大部分进入,下降和着陆(EDL)序列,包括基于阿波罗制导算法的闭环进入制导方案。但是,与MSL不同,“火星2020”将在范围触发器而不是先前使用的速度触发器上触发降落伞部署和下降序列。这种差异将大大减小着陆椭圆的大小。此外,由于切换到范围触发器,每个模型对椭圆总大小的相对贡献也发生了很大变化。本文考虑了由于更改触发方案而对轨迹分散产生的影响,以及这些各种模型对轨迹和EDL性能的贡献。

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