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A Method of Efficient Inclination Changes for Low-thrust Spacecraft

机译:低推力航天器有效倾角变化的方法

摘要

The evolution of low-thrust propulsion technologies has reached a point where such systems have become an economical option for many space missions. The development of efficient, low trip time control laws has received an increasing amount of attention in recent years, though few studies have examined the subject of inclination changing maneuvers in detail. A method for performing economical inclination changes through the use of an efficiency factor is derived front Lagrange's planetary equations. The efficiency factor can be used to regulate propellant expenditure at the expense of trip time. Such a method can be used for discontinuous-thrust transfers that offer reduced propellant masses and trip-times in comparison to continuous thrust transfers, while utilizing thrusters that operate at a lower specific impulse. Performance comparisons of transfers utilizing this approach with continuous-thrust transfers are generated through trajectory simulation and are presented in this paper.
机译:低推力推进技术的发展已经达到了这样的程度,即这种系统已成为许多航天任务的经济选择。近年来,尽管很少有研究详细研究了倾斜变化操纵的主题,但有效的,低行程时间控制律的发展已引起越来越多的关注。拉格朗日的行星方程推导了一种通过使用效率因子进行经济的倾斜度变化的方法。效率因数可用于调节推进剂的消耗,但会缩短飞行时间。这种方法可用于不连续推力传递,与连续推力传递相比,推进剂质量和跳闸时间减少,同时使用了以较低比脉冲运行的推进器。通过轨迹仿真生成了使用这种方法与连续推力传递的传递性能比较,并在本文中进行了介绍。

著录项

  • 作者

    Gefert Leon; Falck Robert;

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  • 年度 2002
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