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Performance of Solar Electric Powered Deep Space Missions Using Hall Thruster Propulsion

机译:利用霍尔推力推进器的太阳能深空任务性能

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摘要

Power limited, low-thrust trajectories were assessed for missions to Jupiter, Saturn, and Neptune utilizing a single Venus Gravity Assist (VGA) and a primary propulsion system based on either a 3-kW high voltage Hall thruster, of the type being developed by the NASA In-Space Propulsion Technology Program, or an 8-kW variant of this thruster. These Hall thrusters operate with specific impulses below 3,000 seconds. A trade study was conducted to examine mission parameters that include: net delivered mass (NDM), beginning-of-life (BOL) solar array power, heliocentric transfer time, required launch vehicle, number of operating thrusters, and throttle profile. The top performing spacecraft configuration was defined to be the one that delivered the highest mass for a range of transfer times. In order to evaluate the potential future benefit of using next generation Hall thrusters as the primary propulsion system, comparisons were made with the advanced state-of-the-art (ASOA), 7-kW, 4,100 second NASA's Evolutionary Xenon Thruster (NEXT) for the same mission scenarios. For the BOL array powers considered in this study (less than 30 kW), the results show that the performance of the Hall thrusters, relative to NEXT, is largely dependant on the performance capability of the launch vehicle, and that at least a 10 percent performance gain, equating to at least an additional 200 kg dry mass at each target planet, is achieved over the higher specific impulse NEXT when launched on an Atlas 551.
机译:使用单个金星重力辅助(VGA)和基于3 kW高压霍尔推力器的主推进系统评估了功率有限的低推力轨迹,以执行前往木星,土星和海王星的任务,该型号由NASA太空推进技术计划或该推进器的8千瓦变体。这些霍尔推力器以低于3,000秒的特定脉冲运行。进行了一项贸易研究,以检查任务参数,包括:净传递质量(NDM),寿命开始(BOL)太阳能电池阵列功率,日心传输时间,所需的运载火箭,工作推进器的数量和节气门轮廓。最高性能的航天器配置被定义为在一定的传输时间内传递最高质量的航天器。为了评估使用下一代霍尔推力器作为主要推进系统的潜在未来收益,将其与先进的先进技术(ASOA),7 kW,4,100秒的NASA进化型氙气推力器(NEXT)进行了比较。对于相同的任务场景。对于本研究中考虑的BOL阵列功率(小于30 kW),结果表明,霍尔推力器的性能(相对于NEXT)在很大程度上取决于运载火箭的性能,并且至少有10%当在Atlas 551上发射时,在更高的比脉冲NEXT的基础上,可以获得更高的性能增益,相当于每个目标行星至少增加了200 kg干重。

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