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A Cis-Lunar Propellant Infrastructure for Flexible Path Exploration and Space Commerce

机译:用于灵活路径探索和太空商业的顺月推进剂基础设施

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This paper describes a concept for a Cis Lunar Propellant Infrastructure that exploits lunar water for propellant production and delivers it to users in Cis-Lunar space. The concept supports multiple goals, to provide responsive economical space transportation beyond low Earth orbit, enable in-space commerce, and support the multiple destinations of "flexible path" exploration. This concept is "game changing" because it would fundamentally affect the architecture of future space operations, provide greater access to space beyond Earth orbit and broaden participation in space exploration. The challenge is to create the infrastructure with a minimum development costs and yet assure that operational costs do not diminish its benefits. The approach to achieving these objectives includes, employing tele-robotics, avoiding maintenance intensive machinery, exploiting the natural lunar environment, employing directed energy technologies for resource extraction and processing and establishing a robust electric power infrastructure. Since the main exported product is propellants, the infrastructure also includes the means of stockpiling, packaging and delivering propellants to users at various rendezvous points in cis-lunar space ranging from low Earth orbit to the lunar orbit. The product delivery aspect will also include a mix of technologies including, cryo-propellant management, reusable lunar landers, propellant tankers, orbital transfer vehicles, aero-braking technologies and electric propulsion. To minimize operational cost the infrastructure is entirely tele-robotic. Resource intensive human flight operations are deferred until the infrastructure is operational and capable of supporting human missions. Ultimately the infrastructure is intended to reduce the cost of both robotic and human space missions. This infrastructure is not strictly dependent on human missions to justify the investment. This infrastructure can be scalable and would serve a wide user base ranging from commercial satellite servicing to large scale human exploration missions. A Cis-lunar Propellant and Logistics Infrastructure dramatically reduces the size and cost of launch vehicles for missions beyond Earth orbit. Since it can extend the effective reach of existing vehicles it, in effect, provides access to deep space to any user capable of reaching low earth orbit. The Cis-lunar Propellant-Logistics Infrastructure is sustained without the need for dedicated logistics launches. This paper introduces the concept where users of the infrastructure can buy propellant services by trading logistics packages with the infrastructure. This process of exchanging logistics for propellants can be regarded as an early form of in-space commerce.
机译:本文介绍了Cis月球推进剂基础设施的概念,该基础设施利用月球水来生产推进剂,并将其交付给Cis-Lunar空间中的用户。该概念支持多个目标,以提供响应性低的地球轨道以外的经济型空间运输,实现太空贸易,并支持“灵活路径”探索的多个目的地。这个概念是“改变游戏规则”,因为它将从根本上影响未来太空作战的体系结构,提供对地球轨道以外空间的更多访问,并扩大对太空探索的参与。挑战在于以最低的开发成本创建基础架构,同时又要确保运营成本不会降低其优势。实现这些目标的方法包括:使用远程机器人,避免维护密集型机器,开发自然的月球环境,采用定向能源技术进行资源提取和处理以及建立强大的电力基础设施。由于主要出口产品是推进剂,因此基础设施还包括在低地球轨道到月球轨道的顺月空间的各个集合点,将推进剂储存,包装和输送给用户的手段。产品交付方面还将包括多种技术组合,包括低温推进剂管理,可重复使用的月球着陆器,推进剂油轮,轨道转移车,航空制动技术和电力推进。为了最大程度地降低运营成本,基础设施完全是远程机器人。资源密集型人类飞行操作会推迟到基础设施开始运行且能够支持人类任务之前。最终,该基础设施旨在降低机器人和人类太空飞行任务的成本。这种基础设施并非严格依靠人类使命来证明投资的合理性。这种基础设施可以扩展,可以为广泛的用户群提供服务,从商业卫星服务到大规模的人类探索任务。顺式推进剂和物流基础设施极大地减少了用于地球轨道以外任务的运载火箭的尺寸和成本。由于它可以扩展现有车辆的有效范围,因此实际上可以为任何能够到达低地球轨道的用户提供进入深空的通道。顺式月球推进剂-物流基础设施得以维持,而无需专门的后勤发射。本文介绍了一种概念,即基础结构的用户可以通过与基础结构交易物流软件包来购买推进剂服务。推进剂交换后勤的这一过程可以看作是空间贸易的一种早期形式。

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