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STATIONKEEPING FOR THE LUNAR RECONNAISSANCE ORBITER (LRO)

机译:坐在月球侦察轨道(LRO)

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The Lunar Reconnaissance Orbiter (LRO) is scheduled to launch in 2008 as the first mission under NASA's Vision for Space Exploration. Following several weeks in a quasi-frozen commissioning orbit, LRO will fly in a 50 km mean altitude lunar polar orbit. During the one year mission duration, the orbital dynamics of a low lunar orbit force LRO to perform periodic sets of stationkeeping maneuvers. This paper explores the characteristics of low lunar orbits and explains how the LRO stationkeeping plan is designed to accommodate the dynamics in such an orbit. The stationkeeping algorithm used for LRO must meet five mission constraints. These five constraints are to maintain ground station contact during maneuvers, to control the altitude variation of the orbit, to distribute periselene equally between northern and southern hemispheres, to match eccentricity at the beginning and the end of the sidereal period, and to minimize stationkeeping ΔV. This paper addresses how the maneuver plan for LRO is designed to meet all of the above constraints.
机译:月球侦察轨道运动员(LRO)计划于2008年推出,因为美国宇航局空间勘探愿景下的第一个任务。在僵硬的调试轨道上几周后,LRO将在50公里的平均月球轨道上飞行。在一年的任务持续时间期间,低月球轨道力量的轨道动态展示了定期培养的行程定期集合。本文探讨了低月球轨道的特点,并解释了LRO架锻点计划如何适应这种轨道中的动态。用于LRO的架架算法必须达到五个任务约束。这五个约束是在操纵期间保持地面站接触,以控制轨道的高度变化,以在北部和南部的北部和南部之间平均分配偏心,以匹配恒星时期的开始和末端,并最大限度地减少互联网ΔV 。本文旨在如何旨在满足所有上述约束的机动计划。

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