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Benefits Of Standardization: New Opportunities For Reduced Cost Crewed Space Analogs

机译:标准化的好处:降低成本的乘员空间类似物的新机会

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A key barrier to the construction and operation of crewed space analogs is the high cost of design and construction. Analogs such as Mars 500. the Mars Society's MDRS and FMARS research stations and the HI-SEAS outpost in Hawaii range in cost from several hundred thousand US dollars to several million. More complex analogs such as the various Antarctic research stations and Biosphere 2 can carry significantly higher construction and operational costs. Additionally, current space analogs are designed to simulate space agency style missions which are characterized by small crews with no population growth, fixed volume habitats and a science mission focus. The advent of private sector missions aimed at establishing permanent human settlements in space and on other celestial bodies also introduces a problem of scaling, which will affect both mission design and governance processes. Simulating settlement missions using current analog design architectures is cost prohibitive, but lower cost solutions can be achieved by employing a modular design approach that leverages existing technologies rather than designing one-off structures for each analog. This paper will present a cost analysis for constructing an analog with architecture similar to that used by the Mars Society using commonly available materials such as shipping containers, pre-fabricated temporary structures and other off-the-shelf components. Such an analog could provide emerging space nations, interested individuals and others who are typically excluded from space analog participation with a low cost means to simulate crewed space missions. Deploying multiple low cost analogs in a single location could also affordably simulate the scaling population inherent to current space settlement efforts which are largely based on modular, standard sized habitation modules.
机译:建造载人空间类似物的主要障碍是设计和建造的高成本。类似的类似物,例如火星500,火星学会的MDRS和FMARS研究站以及夏威夷的HI-SEAS前哨站,价格从几十万美元到几百万美元不等。更复杂的类似物,例如各种南极研究站和Biosphere 2,可能会带来更高的建造和运营成本。此外,当前的太空模拟物被设计用来模拟太空机构式的任务,这些任务的特点是没有人口增长,固定体积的栖息地和科学任务重点的小型机组人员。旨在建立空间和其他天体上的永久性人类住区的私营部门飞行任务的出现也带来了规模问题,这将影响飞行任务的设计和治理程序。使用当前的模拟设计架构来模拟结算任务成本高昂,但是可以通过采用一种利用现有技术的模块化设计方法来实现低成本解决方案,而不是为每个模拟设计一次性结构。本文将介绍一种成本分析方法,该方法用于使用类似于火星学会的架构来构建类似物,该架构类似于火星学会使用的常用材料,例如运输容器,预制的临时结构和其他现成的组件。这样的模拟可以为新兴的太空国家,感兴趣的个人和其他通常被排除在太空模拟参与之外的人提供低成本的手段,以模拟载人航天飞行任务。在单个位置部署多个低成本的类似物还可以负担得起地模拟当前空间定居工作所固有的按比例缩放的人口,这些空间定居工作主要基于模块化,标准尺寸的居住模块。

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