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首页> 外文期刊>Journal of guidance, control, and dynamics >Solar Sail Near-Optimal Circular Transfers with Plane Change
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Solar Sail Near-Optimal Circular Transfers with Plane Change

机译:带有平面变化的太阳帆近乎理想的圆形传递

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摘要

Near-minimum time interplanetary trajectories between circular orbits with different orbital planes are investigated. By assumption, the mission is carried out with a solar sail spacecraft, whose performance takes into account the optical characteristics of the sail film and the maximum temperature constraint. In an effort to obtain a general, albeit approximate, solution, the problem is tackled by dividing the mission in two or three phases, depending on the value of the inclination change between the initial and target orbit. Each phase is analyzed by solving a minimum time problem with an indirect approach, and the whole mission time is estimated as the sum of the contributions of the elementary phases. The obtained results are then collected through graphs and fitting functions that can be used effectively to get a good and quick estimate of the main mission parameters, as well as to quantify their effect on the mission flight time. A comparison of the proposed approach with the optimal results available for the Solar Polar Imager mission confirms the effectiveness of the developed methodology.
机译:研究了具有不同轨道平面的圆形轨道之间的近最小时间的行星际轨迹。通过假设,该任务是由太阳帆航天器执行的,该航天器的性能考虑了帆膜的光学特性和最大温度限制。为了获得一个一般的,尽管是近似的解决方案,通过将飞行任务分为两个或三个阶段来解决该问题,这取决于初始轨道和目标轨道之间的倾角变化值。通过使用间接方法解决最短时间问题来分析每个阶段,并且将整个任务时间估算为基本阶段贡献的总和。然后,通过图形和拟合函数收集获得的结果,这些图形和拟合函数可有效地用于获得主要任务参数的良好且快速的估算,以及量化它们对任务飞行时间的影响。将所提出的方法与“太阳极地成像仪”任务可获得的最佳结果进行比较,证实了所开发方法的有效性。

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