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An Extensible and Affordable Exploration Architecture Utilizing the Deep Space Gateway

机译:利用深空网关的可扩展和经济实惠的探索架构

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Boeing continues to study early exploration Deep Space Gateway (DSG) based architectures that provide foundational technical capabilities while addressing NASA's exploration goals. DSG-based architectures use the capabilities of the SLS for heavy lift and Orion for crew transport, which includes the native capability to deliver a 10 metric ton element to cislunar space in a single launch co-manifested with an Orion. The Boeing architectures seek to take maximum advantage of these capabilities to provide human presence all through the proving ground period of exploration. This paper includes a description of the results of Boeing's study to leverage the DSG to include more lunar surface exploration within the cislunar architecture with special focus on lunar landers. The paper then extends DSG architecture to a logically derived Mars architecture. The Mars architecture heavily leverages capabilities and technologies develop and proven at ISS and cislunar vicinity. The initial conclusions from this study are that an incremental, extensible and enduring exploration architecture based on using the DSG as an access point for both lunar and mars objectives are both feasible and affordable.
机译:波音继续研究早期探索的深度空间网关(DSG)基于基于的架构,在寻址NASA的探索目标时提供的基于基于技术功能。基于DSG的架构利用SLS的SLS的能力为船员运输,包括在单一的发射中为Cislunar空间提供10公吨的机制能力,与猎户座合作。波音架构寻求最大限度地利用这些能力,通过证明的地面探索来提供人类存在。本文包括对波音研究的结果的描述,利用DSG在Cislunar架构内包括更多的月球表面探索,具有特殊焦点在月球郡地上。然后,该文件将DSG架构扩展到逻辑派生的MARS架构。 MARS架构大量利用能力和技术在ISS和Cislunar附近发展和验证。本研究的初始结论是基于使用DSG作为农历和火星目标的接入点的增量,可扩展和持久的探索架构是可行的和价格合理的。

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