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Power Reduction of the Air-Breathing Hall-Effect Thruster.

机译:降低空气呼吸霍尔效应推进器的功率。

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摘要

Electric propulsion system is spotlighted as the next generation space propulsion system due to its benefits; one of them is specific impulse. While there are a lot of types in electric propulsion system, Hall-Effect Thruster, one of electric propulsion system, has higher thrust-to-power ratio and requires fewer power supplies for operation in comparison to other electric propulsion systems, which means it is optimal for long space voyage.;The usual propellant for Hall-Effect Thruster is Xenon and it is used to be stored in the tank, which may increase the weight of the thruster. Therefore, one theory that uses the ambient air as a propellant has been proposed and it is introduced as Air-Breathing Hall-Effect Thruster. Referring to the analysis on Air-Breathing Hall-Effect Thruster, the goal of this paper is to reduce the power of the thruster so that it can be applied to real mission such as satellite orbit adjustment. To reduce the power of the thruster, two assumptions are considered. First one is changing the altitude for the operation, while another one is assuming the alpha value that is electron density to ambient air density.;With assumptions above, the analysis was done and the results are represented. The power could be decreased to 10s∼1000s with the assumptions. However, some parameters that do not satisfy the expectation, which would be the question for future work, and it will be introduced at the end of the thesis.
机译:电动推进系统由于其优势而成为下一代空间推进系统。其中之一是特定的冲动。尽管电动推进系统类型很多,但与其他电动推进系统相比,电动推进系统之一的霍尔效应推力器具有更高的推力/功率比,并且所需的电源更少。霍尔效应推进器的常用推进剂是氙气,通常用于储存在油箱中,这可能会增加推进器的重量。因此,提出了一种使用环境空气作为推进剂的理论,并将其作为空气呼吸霍尔效应推进器引入。参照空气呼吸霍尔效应推力器的分析,本文的目的是降低推力器的功率,以便将其应用于实际任务,如卫星轨道调整。为了减小推进器的功率,考虑了两个假设。第一个是更改操作的高度,而另一个是假设电子值相对于环境空气密度的alpha值。;基于上述假设,进行了分析并给出了结果。根据假设,功率可以降低到10s〜1000s。但是,某些参数不能满足期望,这将是未来工作的问题,并将在本文结尾处介绍。

著录项

  • 作者

    Kim, Sungrae.;

  • 作者单位

    The George Washington University.;

  • 授予单位 The George Washington University.;
  • 学科 Aerospace engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 67 p.
  • 总页数 67
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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