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首页> 外文期刊>Journal of Spacecraft and Rockets >Sequential Design of Satellite Formations with Invariant Distances
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Sequential Design of Satellite Formations with Invariant Distances

机译:距离不变的卫星编队顺序设计

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摘要

This paper presents a general sequential methodology to design a cluster of satellites with constant intersatellite distance. The orbits are assumed to be Keplerian with small eccentricity. The motion of the satellites, with respect to the orbital reference frame, is obtained by linearizing the kinematic equations and is expressed in terms of relative orbital elements. The key idea presented in this paper consists of eliminating the mean anomaly dependence from the expression of the intersatellite distance. Three distinct cases are analyzed depending on the relative orbits: 1) same plane, 2) with same relative orbit center, and 3) other cases. The procedure consists of sequentially solving two quadratic constraint equations for each additional satellite. This sequential approach allows the design of clusters with a large number of satellites. This paper also shows that a time-invariant plane can be associated with each cluster; thus, simplified constraint equations, involving the relative orbital parameters, can be obtained. Finally, the proposed design methodology is clarified with examples highlighting the time-invariant rigidity of the cluster.
机译:本文提出了一种一般的顺序方法,以设计具有恒定星际距离的卫星集群。假设轨道是偏心率较小的开普勒。卫星相对于轨道参考系的运动是通过将运动方程线性化而获得的,并以相对轨道元素的形式表示。本文提出的关键思想是从星际距离的表达中消除平均距平依赖性。根据相对轨道分析了三种不同的情况:1)同一平面,2)相对轨道中心相同,以及3)其他情况。该过程包括为每个附加卫星顺序求解两个二次约束方程。这种顺序方法允许设计具有大量卫星的集群。本文还表明,时不变平面可以与每个聚类相关联。因此,可以获得涉及相对轨道参数的简化约束方程。最后,通过示例来阐明所提出的设计方法,该示例突出了群集的时不变刚度。

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