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Performance of coupled ED-tether/ion thrsuter system

机译:ED-Tether /离子脱壳机系统的性能

摘要

Use of propulsion systems that couple electyrodynamic tethers to ion thrusters, as suggested in the literature, isuddiscussed. The system establishes electrical contact with the ionospheric plasma, at the anodic end of the tether, byudejecting ions instead of collecting electrons; also, the ion thruster adds its thrust to the Lorentz force on the tether. In this paper, we analyze the performance of this coupled system, as measured by the ratio of mission impulse (thrust times mission duration) to the overall system mass, which includes the power subsystem mass, the tether subsystem mass, and the propellant mass consumed in the ion thruster. It is shown that a tether acting by itself, collecting electrons at its anodic end, substantially outperforms the coupled system for times longer than a characteristic time of the ion thruster, for which propellant mass equals the power subsystem mass; for shorter times performances are shown to be similar.
机译:如文献中所建议的,讨论了将电动动力系链与离子推进器耦合的推进系统的使用。该系统通过释放离子而不是收集电子,在系绳的阳极端与电离层等离子体建立电接触。同样,离子推进器将其推力增加到系绳上的洛伦兹力。在本文中,我们通过任务冲动(推力乘以任务持续时间)与整个系统质量(包括功率子系统质量,系绳子系统质量和消耗的推进剂质量)之比来分析此耦合系统的性能。在离子推进器中结果表明,在离子束推进器的质量等于功率子系统质量的情况下,其自身作用而在阳极末端收集电子的系绳,其性能远优于耦合系统,其时间要长于离子推进器的特征时间。对于更短的时间,表现也很相似。

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