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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Ballistic capture into distant retrograde orbits around Phobos: an approach to entering orbit around Phobos without a critical maneuver near the moon
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Ballistic capture into distant retrograde orbits around Phobos: an approach to entering orbit around Phobos without a critical maneuver near the moon

机译:弹道捕获到Phobos周围的遥远的逆行轨道:一种进入Phobos周围的轨道的方法,没有月亮附近的批判机动

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摘要

This paper discusses an approach for designing missions to Phobos that do not require a critical maneuver in proximity of the moon. A low-energy transfer is designed that utilizes the aspherical mass distribution of Phobos to capture a spacecraft into a distant retrograde orbit (DRO) for the mission duration. The process for generating stable DROs in the Mars-Phobos system is discussed along with the method for generating and surveying a set of ballistic capture trajectories (BCTs) for DROs with altitudes between 0.5 and 14 km above Phobos. Statistical analysis of the BCT set reveals options for designing a mission to the desired DRO. This approach can be used in any three-body system when a significant perturbation is present, such as Phobos' aspherical co-rotating gravity field.
机译:本文讨论了将特派团设计给Phobos的方法,这些方法不需要在月球附近处于危重机动。 设计了低能量转移,其利用Phobos的非球面质量分布将航天器捕获到远处逆行轨道(DRO)中进行任务持续时间。 讨论了MARS-PHOBOS系统中产生稳定DRO的方法以及用于在PHOBOS上方0.5至14km之间的鼠标产生和测量一组弹道捕获轨迹(BCT)的方法。 BCT集的统计分析揭示了为所需DRO设计任务的选项。 当存在显着的扰动时,这种方法可用于任何三体系,例如Phobos的非球面共旋转重力场。

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