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Design of the ARES Mars Airplane and Mission Architecture

机译:ARES火星飞机和任务架构的设计

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摘要

Significant technology advances have enabled planetary aircraft to be considered as viable science platforms. Such systems fill a unique planetary science measurement gap, that of regional-scale, near-surface observation, while providing a fresh perspective for potential discovery. Recent efforts have produced mature mission and flight system concepts, ready for flight project implementation. The development of a Mars airplane mission architecture that balances science, implementation risk, and cost is summarized. Airplane mission performance, flight system design, and technology maturation are described. The design, analysis, and testing completed demonstrates the readiness of this science platform for use in a Mars flight project.
机译:重大的技术进步使行星飞机被视为可行的科学平台。这样的系统填补了独特的行星科学测量空白,即区域规模的近地表观测的空白,同时为潜在的发现提供了新的视角。最近的努力产生了成熟的任务和飞行系统概念,可以为飞行项目的实施做好准备。总结了平衡科学,实施风险和成本的火星飞机任务架构的开发。描述了飞机的任务性能,飞行系统设计和技术成熟度。完成的设计,分析和测试证明了此科学平台已准备就绪,可用于火星飞行项目。

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