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首页> 外文期刊>Advances in space research >Zero drift regions and control strategies to keep satellite in formation around triangular libration point in the restricted Sun-Earth-Moon scenario
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Zero drift regions and control strategies to keep satellite in formation around triangular libration point in the restricted Sun-Earth-Moon scenario

机译:零漂移区和控制策略,在受限制的日地月亮场景中,将卫星保持在三角形释放点附近

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In this work, we are interested in avoiding large variations in the mutual distances among multiple satellites and also in controlling their geometric configuration around an Earth-Moon triangular point. Previous studies about triangular libration points have determined the existence of zero drift regions with respect to the nominal trajectory, in which the expansion or contraction of the formation never take place. Our goal is to carry out two different control strategies for a formation near a given nominal trajectory around L_4: a bang-off-bang control and a minimum weighted total ΔV consumption. A linearization relative to the reference trajectory around the triangular libration point is carried out, and different geometrical possibilities in the zero drift regions are studied. To investigate the influence of the gravitational force of the Sun, the BiCircular Four Body Problem is considered here. According to the results obtained, some meaningful insights to allow a proper design of the geometric configuration of the formation are drawn.
机译:在这项工作中,我们有兴趣避免多颗卫星之间的相互距离发生较大变化,并希望控制其在地球月亮三角点周围的几何形状。先前关于三角形释放点的研究已经确定了相对于标称轨迹的零漂移区域的存在,在该区域中从未发生地层的膨胀或收缩。我们的目标是对L_4附近的给定标称轨迹附近的地层执行两种不同的控制策略:爆炸控制和最小加权总ΔV消耗。对围绕三角形释放点的参考轨迹进行了线性化,并研究了零漂移区中的不同几何可能性。为了研究太阳引力的影响,此处考虑了双圆四体问题。根据获得的结果,得出了一些有意义的见解,可以对地层的几何构造进行适当的设计。

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