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Design Tools for Cost-Effective Implementation of Planetary Protection Requirements

机译:经济有效地实施行星保护要求的设计工具

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Since the Viking missions to Mars in the 1970s, accounting for the costs associated with planetary protection implementation has not been done systematically during early project formulation phases, leading to unanticipated costs during subsequent implementation phases of flight projects. In the intervening period, more rigorous planetary protection requirements, resulting from new knowledge about the limits of life on Earth, have been developed. This, together with current plans to conduct life-detection experiments on a number of different solar system target bodies is motivated a systematic approach to integrating planetary protection requirements and mission design. A current development effort at NASA's Jet Propulsion Laboratory is aimed at integrating planetary protection requirements more fully into the early phases of mission architecture formulation and at developing tools to more rigorously predict associated cost and schedule impacts of architecture options chosen to meet planetary protection requirements.
机译:自20世纪70年代Viking任务到MARS以来,在早期项目制定阶段期间尚未系统地占与行星保护执行相关的成本,导致在随后的飞行项目实施阶段期间出于意外的成本。在介入期间,已经开发出地球对地球上生命限制的新知识产生的更严格的行星保护要求。这与当前计划在许多不同的太阳系目标体上进行寿命检测实验,这是一种系统的方法,可以集成行星保护要求和任务设计。 NASA射流推进实验室的目前的发展努力旨在将行星保护要求更全面地进入特派团架构制定的早期阶段以及开发工具,以更加严格地预测所选择的建筑选项的相关成本和进度影响,以满足行星保护要求。

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