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Launch and assembly reliability analysis for human space exploration missions

机译:载人航天发射任务的发射和组装可靠性分析

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NASA's future human space exploration strategy includes single and multi-launch missions to various destinations including cis-lunar space, near Earth objects such as asteroids, and ultimately Mars. Each campaign is being defined by Design Reference Missions (DRMs). Many of these missions are complex, requiring multiple launches and assembly of vehicles in orbit. Certain missions also have constrained departure windows to the destination. These factors raise concerns regarding the reliability of launching and assembling all required elements in time to support planned departure. This paper describes an integrated methodology for analyzing launch and assembly reliability in any single DRM or set of DRMs starting with flight hardware manufacturing and ending with final departure to the destination. A discrete event simulation is built for each DRM that includes the pertinent risk factors including, but not limited to: manufacturing completion; ground transportation; ground processing; launch countdown; ascent; rendezvous and docking, assembly, and orbital operations leading up to trans-destination-injection. Each reliability factor can be selectively activated or deactivated so that the most critical risk factors can be identified. This enables NASA to prioritize mitigation actions so as to improve mission success.
机译:NASA未来的人类太空探索战略包括一次和多次发射任务,这些任务包括顺月球空间,小行星等地球物体以及最终的火星等各个目的地。每个活动都由设计参考任务(DRM)定义。这些任务中的许多任务都很复杂,需要在轨道上多次发射和组装车辆。某些任务还限制了前往目的地的出发窗口。这些因素引起了人们对及时发射和组装所有必需元件以支持计划中的起飞的可靠性的担忧。本文介绍了一种综合的方法,用于分析任何单个DRM或一组DRM中的发射和组装可靠性,从飞行硬件制造开始到最终到达目的地为止。为每个DRM构建一个离散事件模拟,其中包括相关的风险因素,包括但不限于:制造完成;地面运输;地面处理;启动倒计时;上升;会合和对接,组装和轨道操作,导致跨目标注入。可以选择性地激活或停用每个可靠性因素,从而可以确定最关键的风险因素。这使NASA能够优先考虑缓解措施,从而提高任务成功率。

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