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Automated Missed-Thrust Propellant Margin Analysis for Low-Thrust Missions to Mars and a Near-Earth Asteroid

机译:针对火星和近地小行星的低推力任务的自动推力推进剂余量分析

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Spacecraft employing low-thrust propulsion must be able to recover from an event in which the spacecraft stops thrusting due to an unforseen problem. Extra propellant is carried to allow the spacecraft to reach its target in the form of propellant margin. We present an automated method for estimating the propellant margin a spacecraft should carry and apply the method to a transfer to Mars and a solar sail transfer to the NEA 1991 VG. Examining different power levels for the Mars transfer, we show that a 5% margin is sufficient to recover from a 20-day missed thrust for a 10 kW spacecraft, while a 15% margin is required for a 20 kW spacecraft. For the solar sail mission, a spacecraft outage late in the mission may delay arrival by more than 200 days.
机译:采用低推力推进的航天器必须能够从由于不可预见的问题而停止推进的事件中恢复过来。携带额外的推进剂以使航天器以推进剂余量的形式到达其目标。我们提出了一种估算航天器应携带的推进剂余量的自动方法,并将该方法应用于向火星的转移以及向NEA 1991 VG的太阳帆转移。通过研究火星传输的不同功率水平,我们发现5%的裕度足以从10 kW的航天器的20天错位推力中恢复过来,而20 kW的航天器则需要15%的裕度。对于太阳帆任务,在任务后期发生航天器中断可能会将到达时间延迟200天以上。

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