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Natural and sail-displaced doubly-symmetric Lagrange point orbits for polar coverage

机译:自然和航行位移的双对称拉格朗日点轨道用于极地覆盖

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This paper proposes the use of doubly-symmetric, eight-shaped orbits in the circular restricted three-body problem for continuous coverage of the high-latitude regions of the Earth. These orbits, for a range of amplitudes, spend a large fraction of their period above either pole of the Earth. It is shown that they complement Sun-synchronous polar and highly eccentric Molniya orbits, and present a possible alternative to low thrust pole-sitter orbits. Both natural and solar-sail displaced orbits are considered. Continuation methods are described and used to generate families of these orbits. Starting from ballistic orbits, other families are created either by increasing the sail lightness number, varying the period or changing the sail attitude. Some representative orbits are then chosen to demonstrate the visibility of high-latitude regions throughout the year. A stability analysis is also performed, revealing that the orbits are unstable: it is found that for particular orbits, a solar sail can reduce their instability. A preliminary design of a linear quadratic regulator is presented as a solution to stabilize the system by using the solar sail only. Finally, invariant manifolds are exploited to identify orbits that present the opportunity of a ballistic transfer directly from low Earth orbit.
机译:本文提出在圆形受限三体问题中使用双对称八字形轨道连续覆盖地球的高纬度区域。这些轨道在一定幅度范围内,在其周期的大部分时间都位于地球任一极以上。结果表明,它们补充了太阳同步的极地和高度偏心的Molniya轨道,并提出了低推力极地定星器轨道的替代方案。自然和太阳帆移位的轨道都被考虑了。描述了连续方法,并将其用于生成这些轨道的族。从弹道开始,通过增加帆的亮度数,改变周期或改变帆的姿态来创建其他族。然后选择一些有代表性的轨道,以展示全年高纬度地区的能见度。还进行了稳定性分析,揭示了轨道是不稳定的:发现对于特定的轨道,太阳帆可以减少其不稳定性。提出了线性二次调节器的初步设计,作为仅通过使用太阳帆来稳定系统的解决方案。最后,利用不变的流形来识别能够直接从低地球轨道转移弹道的轨道。

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