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MISSION ARCHITECTURE AND TECHNOLOGY OPTIONS FOR A FLAGSHIP CLASS VENUS IN SITU MISSION

机译:旗舰类金星的使命架构和技术选择原位使命

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Venus, as part of the inner triad with Earth and Mars, represents an important exploration target if we want to learn more about solar system formation and evolution. Comparative planetology could also elucidate the differences between the past, present, and future of these three planets, and can help with the characterization of potential habitable zones in our solar system and, by extension, extra-solar systems. A long-lived in situ Venus mission concept, called the Venus Mobile Explorer, was prominently featured in NASA's 2006 SSE Roadmap and supported in the community White Paper by the Venus Exploration Analysis Group (VEXAG). Long-lived in situ missions are expected to belong to the largest (Flagship) mission class, which would require both enabling and enhancing technologies beside mission architecture options. Furthermore, extreme environment mitigation technologies for Venus are considered long lead development items and are expected to require technology development through a dedicated program. To better understand programmatic and technology needs and the motivating science behind them, in this fiscal year (FY08) NASA is funding a Venus Flaghip class mission study, based on key science and technology drivers identified by a NASA appointed Venus Science and Technology Definition Team (STDT). These mission drivers are then assembled around a suitable mission architecture to further refine technology and cost elements. In this paper we will discuss the connection between the final mission architecture and the connected technology drivers from this NASA funded study, which - if funded - could enable a future Flagship class Venus mission and potentially drive a proposed Venus technology development program.
机译:作为地球和火星的内部三合会的一部分,金星代表了一个重要的探索目标,如果我们想了解有关太阳系形成和进化的更多信息。比较行星也可以阐明这三个行星的过去,现在和未来之间的差异,并且可以帮助我们在太阳系中的潜在可居所区的表征,并通过延伸超太阳系。一个长期生活在原位金星任务概念,叫做维纳斯的移动浏览器,由金星探测分析集团(VEXAG)的突出特色美国宇航局2006年SSE路线图,并支持社区白皮书。预计境内使用的长期以来将属于最大(旗舰)任务课程,这需要在使命架构方面选择旁边的能够增强技术。此外,金星的极端环境缓解技术被认为是长的铅开发项目,预计将通过专用计划要求技术开发。为了更好地理解方案和技术的需求及其背后的激励科学,在本财年(2008财年),美国航空航天局正在资助一个金星Flaghip级任务研究的基础上,由美国航空航天局确定的任命金星科技定义团队重点科技驱动程序( STDT)。然后,这些使命司机围绕合适的使命架构组装,以进一步改进技术和成本元素。在本文中,我们将讨论最终任务架构与来自美国国家航空航天局资助的研究的联系技术司机之间的联系,如果资助 - 可以启用未来的旗舰类金星使命,并可能推动拟议的金星科技发展计划。

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