首页> 外文OA文献 >Launch and Assembly Reliability Analysis for Mars Human Space Exploration Missions
【2h】

Launch and Assembly Reliability Analysis for Mars Human Space Exploration Missions

机译:火星人类太空探索任务的发射和组装可靠性分析

摘要

NASA s long-range goal is focused upon human exploration of Mars. Missions to Mars will require campaigns of multiple launches to assemble Mars Transfer Vehicles in Earth orbit. Launch campaigns are subject to delays, launch vehicles can fail to place their payloads into the required orbit, and spacecraft may fail during the assembly process or while loitering prior to the Trans-Mars Injection (TMI) burn. Additionally, missions to Mars have constrained departure windows lasting approximately sixty days that repeat approximately every two years. Ensuring high reliability of launching and assembling all required elements in time to support the TMI window will be a key enabler to mission success. This paper describes an integrated methodology for analyzing and improving the reliability of the launch and assembly campaign phase. A discrete event simulation involves several pertinent risk factors including, but not limited to: manufacturing completion; transportation; ground processing; launch countdown; ascent; rendezvous and docking, assembly, and orbital operations leading up to TMI. The model accommodates varying numbers of launches, including the potential for spare launches. Having a spare launch capability provides significant improvement to mission success.
机译:NASA的长期目标集中在人类对火星的探索上。前往火星的任务将要求进行多次发射运动,以将火星转运车组装到地球轨道上。发射活动可能会受到延误,发射飞行器可能无法将其有效载荷置于所需的轨道上,航天器可能会在组装过程中或在跨火星喷射(TMI)燃烧之前游荡时发生故障。此外,前往火星的任务将离境窗口限制在大约60天左右,大约每两年重复一次。确保及时启动和组装所有必需元件以支持TMI窗口的高度可靠性将是成功完成任务的关键。本文介绍了一种用于分析和改善启动和组装战役阶段可靠性的集成方法。离散事件模拟涉及几个相关的风险因素,包括但不限于:制造完成;运输;地面处理;启动倒计时;上升;交会,对接,组装和轨道操作,直至产生TMI。该模型可容纳不同数量的发射,包括备用发射的潜力。拥有备用发射功能可显着改善任务成功率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号