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The exploration of Mars launch assembly simulation

机译:火星发射与装配模拟探索

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Advancing human exploration of space beyond Low Earth Orbit, and ultimately to Mars, is of great interest to NASA, other organizations, and space exploration advocates. Various strategies for getting to Mars have been proposed. These include NASA's Design Reference Architecture 5.0, a near-term flyby of Mars advocated by the group Inspiration Mars, and potential options developed for NASA's Evolvable Mars Campaign. Regardless of which approach is used to get to Mars, they all share a need to visualize and analyze their proposed campaign and evaluate the feasibility of the launch and on-orbit assembly segment of the campaign. The launch and assembly segment starts with flight hardware manufacturing and ends with final departure of a Mars Transfer Vehicle (MTV), or set of MTVs, from an assembly orbit near Earth. This paper describes a discrete event simulation based strategic visualization and analysis tool that can be used to evaluate the launch campaign reliability of any proposed strategy for exploration beyond low Earth orbit. The input to the simulation can be any manifest of multiple launches and their associated transit operations between Earth and the exploration destinations, including Earth orbit, lunar orbit, asteroids, moons of Mars, and ultimately Mars. The simulation output includes expected launch dates and ascent outcomes i.e., success or failure. Running 1,000 replications of the simulation provides the capability to perform launch campaign reliability analysis to determine the probability that all launches occur in a timely manner to support departure opportunities and to deliver their payloads to the intended orbit. This allows for quantitative comparisons between alternative scenarios, as well as the capability to analyze options for improving launch campaign reliability. Results are presented for representative strategies.
机译:NASA,其他组织和太空探索倡导者对推动人类对近地轨道以外的太空探索以及最终对火星的探索充满兴趣。已经提出了各种前往火星的策略。其中包括NASA的设计参考架构5.0,Inspiration Mars小组倡导的火星近期飞掠计划,以及为NASA的可进化火星战役开发的潜在选择。无论采用哪种方法到达火星,他们都需要可视化和分析其拟议的战役并评估战役的发射和在轨组装部分的可行性。发射和组装部分从飞行硬件制造开始,到火星转移车(MTV)或一组MTV最终离开地球附近的组装轨道结束。本文介绍了一种基于离散事件模拟的战略可视化和分析工具,该工具可用于评估任何提出的低地球轨道探索策略的发射活动可靠性。模拟的输入可以是多次发射及其在地球与探索目的地之间的关联运输操作的任何体现,包括地球轨道,月球轨道,小行星,火星的卫星,以及最终的火星。模拟输出包括预期的发射日期和上升结果,即成功或失败。运行模拟的1,000次复制可以执行发射活动可靠性分析,从而确定所有发射及时发生的可能性,以支持离场机会并将其有效载荷运送到预定轨道。这样就可以对替代方案之间进行定量比较,并具有分析选项的能力,以提高发射活动的可靠性。给出了代表策略的结果。

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