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Settlement-Class In-Space Transportation for Moon and Mars

机译:月球和火星的定居级太空运输

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Methods for formulating architectures economical enough to begin progress toward prototype space settlements are presented, beginning with goals, applying principles that lead to higher performance and lower cost, and tailoring of systems engineering methods. Several example architectures for lunar and Mars exploration and development are presented that use strategic location of propellant depots and solar electric propulsion for their delivery. These architectures reduce launch mass and re-use some or all of the in-space elements. Cost-per-mission reduction factors on the order of two to five are indicated. If combined with a partially re-usable launch system that reduces launch cost by a factor of two, overall reductions approaching an order of magnitude are possible.
机译:提出了制定经济可行的架构以开始向原型空间解决方案发展的方法,这些方法从目标开始,应用导致更高性能和更低成本的原理,以及量身定制系统工程方法。提出了一些用于月球和火星探索和开发的示例架构,这些架构使用了推进剂仓库和太阳能推进器的战略位置进行交付。这些架构减少了发射质量,并重新使用了部分或全部空间元素。每个任务的成本降低因子大约为2到5。如果与能够将发射成本降低两倍的部分可重复使用的发射系统结合使用,则总体下降幅度可能接近一个数量级。

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