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A Facility for Testing High-Power Electric Propulsion Systems in Space: A Design Study

机译:一种用于测试大功率电力推进系统的设施:一项设计研究

摘要

This paper will describe the results of the preliminary phase of a NASA design study for a facility to test high-power electric propulsion systems in space. The results of this design study are intended to provide a firm foundation for a subsequent detailed design and development activities leading to the deployment of a valuable space facility supporting the new vision of space exploration. The objectives for human and robotic exploration of space can be accomplished affordably, safely and effectively with high-power electric propulsion systems. But, as thruster power levels rise to the hundreds of kilowatts and up to megawatts, their testing will pose stringent and expensive demands on existing Earth-based vacuum facilities. These considerations and the access to near-Earth space provided by the International Space Station (ISS) have led to a renewed interest in space testing. The ISS could provide an excellent platform for a space-based test facility with the continuous vacuum conditions of the natural space environment and no chamber walls to modify the open boundary conditions of the propulsion system exhaust. The platform would be designed to accommodate the side-by-side testing of multiple types of electric thrusters currently under development and thus provide a strong basis for comparing their relative performance. The utility of testing on the station is further enhanced by the human presence, enabling close interaction with and modification of the test hardware in a true laboratory environment. These conditions facilitate rapid development and flight certification at potentially lower cost than with conventional Earth-bound facilities. As an added benefit, the propulsive effect of these tests could provide some drag compensation for the station, reducing the re-boost cost for the orbital facility. While it is expected that the ISS will not be capable of generating continuous levels of high power, the utilization of state-of-the-art energy storage media would be sufficient to achieve very high power levels over intervals short enough to be feasible and long enough to provide ample demonstration of steady-state operation. This paper will outline the results of the preliminary phase of the design study with emphasis on the requirements that will dictate the system design.
机译:本文将介绍NASA设计研究的初步阶段的结果,该研究旨在测试一种在太空中测试高功率电力推进系统的设施。该设计研究的结果旨在为随后的详细设计和开发活动提供坚实的基础,从而导致部署有价值的太空设施以支持太空探索的新视野。借助大功率电动推进系统,可以经济,安全,有效地完成人类和机器人探索太空的目标。但是,随着推进器功率水平上升到数百千瓦,甚至达到兆瓦,其测试将对现有的基于地球的真空设施提出严格而昂贵的要求。这些考虑因素以及国际空间站(ISS)提供的进入近地空间的机会,引起了人们对空间测试的新兴趣。 ISS可以为天基测试设施提供一个出色的平台,该平台具有自然空间环境的连续真空条件,并且没有腔室壁可以改变推进系统排气的开放边界条件。该平台将被设计为适应当前正在开发的多种类型的电动推进器的并排测试,从而为比较其相对性能提供了坚实的基础。现场人员的存在进一步增强了在工作站上进行测试的实用性,从而可以在真实的实验室环境中与测试硬件进行紧密交互并对其进行修改。与传统的接地设施相比,这些条件有助于以较低的成本进行快速开发和飞行认证。另外一个好处是,这些测试的推进作用可以为台站提供一定的阻力补偿,从而减少轨道设施的再增压成本。虽然预计国际空间站将无法产生连续的高功率水平,但利用最先进的储能介质将足以在很短的时间间隔内实现非常高的功率水平,以确保可行和长久。足以提供足够的稳态操作演示。本文将概述设计研究初步阶段的结果,重点放在决定系统设计的要求上。

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    Petro Andrew J.;

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  • 年度 2005
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