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Conceptual design of a habitation module for a deep space exploration mission

机译:用于深空探测任务的居住模块的概念设计

摘要

The paper deals with the conceptual design of a habitable module conceived for long duration space exploration missions. The pressurized habitation module (HAB) was specifically sized for a Near Earth Asteroid (NEA) mission, named AENEA ―humAn Exploration mission to a Near Earth Asteroid‖. This mission is conceived as an intermediate step before going to further destinations and aims at testing technologies necessary for reaching more challenging targets. In accordance to the mission objectives, the HAB was devised as a reusable space infrastructure, suitable for different exploration scenarios with only minor changes in the architecture/design. The paper describes the design process that, starting from the mission statement, was followed to define the objectives, the requirements and the architecture of the module in terms of system and subsystems configuration. In particular, the HAB was designed to safely sustain the life of 4 astronauts, for a mission to a NEA lasting about 6 months. The main subsystems of the HAB were sized in order to provide the astronauts with the needed resources, support the activities during all operational phases, including the Extra Vehicular Activities (EVA) on the asteroid's surface, and protect them against the external environment, with particular attention to the space radiation, one of the most critical aspects of this kind of mission. In this regard, appropriate analyses were carried out for selecting the best shielding strategy. For the execution of the EVAs on the asteroid surface, a dedicated airlock and specific EVA support tools were included. The paper reports a detailed description of the subsystems and their innovative aspects. Starting from the mission phases and the related scenarios, different modes of operations were identified. System budgets were evaluated for the envisaged operational modes. The paper illustrates both the applied methodologies and the results, highlighting the major criticalities to be faced (long exposure to space radiations, EVA operations on the asteroid surface) and the key technologies (radiation shielding, inflatable technology, EVA support tools)
机译:本文涉及为长期太空探索任务而设计的可居住模块的概念设计。加压居住舱(HAB)的大小专门用于近地小行星(NEA)任务,被称为AENEA“人类对近地小行星的探索任务”。该任务被认为是前往更多目的地之前的中间步骤,旨在测试达到更具挑战性目标所需的技术。根据任务目标,HAB被设计为可重复使用的空间基础设施,仅需对架构/设计进行少量改动即可适用于不同的探索场景。本文描述了从任务陈述开始的设计过程,该过程遵循系统和子系统配置来定义模块的目标,要求和体系结构。特别是,HAB旨在安全地维持4名宇航员的生命,执行NEA任务约需6个月。确定HAB的主要子系统的大小,以便为宇航员提供所需的资源,在所有操作阶段支持活动,包括小行星表面的车外活动(EVA),并保护他们免受外部环境的侵害,特别是注意空间辐射是这种任务最关键的方面之一。在这方面,进行了适当的分析以选择最佳的屏蔽策略。为了在小行星表面执行EVA,包括了专用的气闸和特定的EVA支撑工具。本文报告了有关子系统及其创新方面的详细说明。从任务阶段和相关方案开始,确定了不同的操作模式。对系统预算进行了设想的运行模式评估。本文阐述了应用的方法论和结果,重点指出了将要面临的主要关键(长时间暴露于空间辐射,小行星表面的EVA操作)和关键技术(辐射屏蔽,充气技术,EVA支持工具)

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