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The Orion spacecraft as a key element in a deep space gateway

机译:猎户座航天器是深空通道中的关键要素

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With the Orion exploration vehicle and Space Launch System (SLS) approaching operational status, NASA and the international community are developing the next generation of habitats to serve as a deep space platform that will be the first of its kind, a cislunar Deep Space Gateway (DSG). The DSG is evolvable, flexible, and modular. It would be positioned in the vicinity of the Moon and allow astronauts to demonstrate they can operate for months at a time well beyond Low Earth Orbit. Orion is the next generation human exploration spacecraft being developed by NASA. It is designed to perform deep space exploration missions, and is capable of carrying a crew of 4 astronauts on independent free-flight missions up to 21 days, limited only by consumables. Because Orion meets the strict requirements for deep space flight environments (reentry conditions, deep-space communications, safety, radiation, and life support for example) it is a key element in a DSG and is more than just a transportation system. Orion has the capability to act as the command deck of any deep space piloted vehicle. To increase affordability and reduce the complexity and number of subsystem functions the early DSG must be responsible for, the DSG can leverage these unique deep space qualifications of Orion. For example, Orion already contains sleep stations, a galley, and a toilet. Therefore, the DSG would not need those functions especially in its early stages of buildup. Orion also meets deep space radiation storm shelter requirements and therefore removes the need for that accommodation on the gateway. As a visiting vehicle, Orion also has additional capacity for CO2 and humidity removal as well as excess power capacity that could be used to operate gateway systems. Because the gateway will be crew tended (meaning crew is not present continuously) it will need basic spacecraft functionality to provide functions like power, attitude control, low rate communication, and command and data handling when astronauts are not present. In this mode of operation, the gateway operates more like an interplanetary robotic vehicle, with a high level of self-sufficiency. While astronauts are living there however, the gateway will need to meet the difficult requirements of deep space and be astronaut-safe. This paper explores in more detail the many ways in which Orion can use its advanced capabilities to augment an early DSG, thereby decreasing complexity and improving affordability.
机译:随着猎户座探索飞行器和太空发射系统(SLS)接近运行状态,美国国家航空航天局(NASA)和国际社会正在开发下一代栖息地,以作为深空平台,这将是首个此类平台,即月球深空门户( DSG)。 DSG是可发展的,灵活的和模块化的。它会被放置在月球附近,并让宇航员证明他们可以在远近低地球轨道的时间运行数月之久。 Orion是NASA研发的下一代人类探索航天器。它旨在执行深空探索任务,并且能够搭载4名宇航员执行独立的自由飞行任务,最多21天,仅受消耗品限制。由于Orion符合深空飞行环境的严格要求(例如重入条件,深空通信,安全,辐射和生命支持),因此它是DSG中的关键要素,而不仅仅是运输系统。 Orion有能力充当任何深空驾驶飞行器的指挥舱。为了提高负担能力,减少早期DSG必须负责的子系统功能的复杂性和数量,DSG可以利用Orion的这些独特的深空资格。例如,猎户座已经包含睡眠站,厨房和厕所。因此,DSG不需要这些功能,尤其是在其早期阶段。 Orion还满足深空辐射风暴避难所的要求,因此无需在网关上安装该设施。作为来访车辆,Orion还具有额外的二氧化碳和湿气去除能力以及可用于运营网关系统的超大功率能力。由于网关将由机组人员照料(这意味着机组人员不会连续出现),因此它将需要基本的航天器功能来提供功能,例如动力,姿态控制,低速通信以及宇航员不在场时的命令和数据处理。在这种操作模式下,网关的运行更像是行星际机​​器人车辆,具有高度的自给自足性。然而,当宇航员居住在那儿时,该门户将需要满足深空的艰巨要求,并且必须是宇航员安全的。本文更详细地探讨了Orion可以使用其先进功能来增强早期DSG的许多方式,从而降低了复杂性并提高了可负担性。

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