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Human exploration of near earth asteroids: Mission analysis for chemical and electric propulsion

机译:人类对近地小行星的探索:化学和电力推进的任务分析

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摘要

This paper presents a mission analysis comparison of human missions to asteroids using two distinct architectures. The objective is to determine if either architecture can reduce launch mass with respect to the other, while not sacrificing other performance metrics such as mission duration. One architecture relies on chemical propulsion, the traditional workhorse of space exploration. The second combines chemical and electric propulsion into a hybrid architecture that attempts to utilize the strengths of each, namely the short flight times of chemical propulsion and the propellant efficiency of electric propulsion. The architectures are thoroughly detailed, and accessibility of the known asteroid population is determined for both. The most accessible asteroids are discussed in detail. Aspects such as mission abort scenarios and vehicle reusability are also discussed. Ultimately, it is determined that launch mass can be greatly reduced with the hybrid architecture, without a notable increase in mission duration. This demonstrates that significant performance improvements can be introduced to the next step of human space exploration with realistic electric propulsion system capabilities. This leads to immediate cost savings for human exploration and simultaneously opens a path of technology development that leads to technologies enabling access to even further destinations in the future.
机译:本文介绍了使用两种不同的架构对人类对小行星的任务进行的任务分析比较。目的是确定一个体系结构是否可以相对于另一个体系结构减少发射质量,同时又不牺牲其他性能指标,如任务持续时间。一种架构依赖于化学推进器,这是空间探索的传统主力。第二种将化学和电力推进技术结合到一个混合架构中,该架构试图利用每种技术的优势,即化学推进技术的短飞行时间和电力推进技术的效率。全面详细地介绍了这些架构,并确定了两者的已知小行星种群的可及性。我们将详细讨论最容易接近的小行星。还讨论了任务中止情况和车辆可重复使用性等方面。最终,确定使用混合架构可以大大减少发射质量,而不会显着增加任务持续时间。这表明可以通过现实的电推进系统功能将显着的性能改进引入下一步的人类太空探索。这可以立即节省人类探索的成本,同时开辟了一条技术发展道路,使技术可以在将来到达更远的目的地。

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