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Constellation Ground Systems Launch Availability Analysis: Enhancing Highly Reliable Launch Systems Design

机译:星座地面系统发射可用性分析:增强高度可靠的发射系统设计

摘要

Success of the Constellation Program's lunar architecture requires successfully launching two vehicles, Ares I/Orion and Ares V/Altair, in a very limited time period. The reliability and maintainability of flight vehicles and ground systems must deliver a high probability of successfully launching the second vehicle in order to avoid wasting the on-orbit asset launched by the first vehicle. The Ground Operations Project determined which ground subsystems had the potential to affect the probability of the second launch and allocated quantitative availability requirements to these subsystems. The Ground Operations Project also developed a methodology to estimate subsystem reliability, availability and maintainability to ensure that ground subsystems complied with allocated launch availability and maintainability requirements. The verification analysis developed quantitative estimates of subsystem availability based on design documentation; testing results, and other information. Where appropriate, actual performance history was used for legacy subsystems or comparative components that will support Constellation. The results of the verification analysis will be used to verify compliance with requirements and to highlight design or performance shortcomings for further decision-making. This case study will discuss the subsystem requirements allocation process, describe the ground systems methodology for completing quantitative reliability, availability and maintainability analysis, and present findings and observation based on analysis leading to the Ground Systems Preliminary Design Review milestone.
机译:星座计划月球架构的成功需要在非常有限的时间内成功发射两辆战车,Ares I / Orion和Ares V / Altair。飞行器和地面系统的可靠性和可维护性必须为成功发射第二架飞行器提供很高的可能性,以避免浪费第一架飞行器发射的在轨资产。地面行动项目确定了哪些地面子系统有可能影响第二次发射的可能性,并为这些子系统分配了定量可用性要求。地面运营项目还开发了一种方法,用于估计子系统的可靠性,可用性和可维护性,以确保地面子系统符合分配的发射可用性和可维护性要求。验证分析根据设计文档对子系统可用性进行了定量评估;测试结果和其他信息。在适当的情况下,实际性能历史记录将用于支持Constellation的旧式子系统或比较组件。验证分析的结果将用于验证是否符合要求,并突出设计或性能缺陷以供进一步决策。本案例研究将讨论子系统需求分配过程,描述用于完成定量可靠性,可用性和可维护性分析的地面系统方法,并基于分析得出地面系统初步设计评审里程碑的结果和观察。

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