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A Cost Modeling Approach for Entry Systems Analysis of Human Mars Missions

机译:人类火星任务进入系统分析成本建模方法

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Cost is one of the biggest obstacles to sending humans to Mars. However, spacecraft costs are typically not estimated until after the preliminary vehicle and mission concepts have been designed. By automating the cost estimation process, the effect of any change in vehicle or mission design on the mission cost can be determined more efficiently. This paper describes an extension to the tool Systems Analysis for Planetary Entry, Descent, and Landing which integrates the cost modeling software System Estimation and Evaluation of Resources-Hardware with a number of systems analysis tools. This new method is used to analyze several tradespaces of an entry vehicle for human Mars missions utilizing a Hypersonic Inflatable Aerodynamic Decelerator and provide preliminary results. Key findings include quantifying how ballistic coefficient, main engine specific impulse, and thrust to weight ratio affect the cost of the vehicle and how the payload per lander and number of landers affects the cost of a campaign to Mars.
机译:成本是在发送人类火星的最大障碍之一。然而,航天器的成本通常不预计到初步车辆和使命的概念已经被设计出来以后。通过自动的成本估计处理,可以更有效地确定在任务成本在车辆或任务设计的任何变化的影响。本文介绍的扩展工具系统分析行星进入,下降和着陆,其成本建模软件系统估计和资源,硬件评估与多家系统分析工具集成。这种新方法被用于分析利用高超音速空气动力学充气减速人类火星探测任务的入门车的几个tradespaces并提供初步结果。的主要结果包括定量弹道系数,主发动机比冲,和推重比如何影响车辆的成本,以及如何每Lander和着陆器的数目有效载荷影响到运动到火星的成本。

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