论文标题
低月球轨道的高保真半分析理论
High-Fidelity Semianalytical Theory for a Low Lunar Orbit
论文作者
论文摘要
我们为低空月球轨道开发了一种半分析理论,目的是验证应考虑重力模型的最低顺序,以便产生可应用的结果,以应用于实际任务的分析和设计。以此目的,我们考虑了一个扰动模型,该模型包括一个50x50的引力场和地球的第三体吸引力。最初,简要描述了发展理论的过程。然后,讨论的重点是寻找冷冻轨道,为此,分别分析了引力模型的每个谐波项的影响。由于包括高阶Zonal谐波,因此可以出现新的冷冻轨道家族。另外,冻结轨道的偏心率和倾斜度值可能存在变化。这种效果非常重要,需要考虑到这一点,因为忽略高阶谐波可以预测在某些倾向上存在冷冻轨道的存在,在某些倾向上,冷冻轨道偏心率实际上超出了影响极限。因此,已经证实,与其他作者一致,应考虑实际应用的最小值50x50引力模型。
We have developed a semi-analytical theory for low-altitude lunar orbits with the aim of verifying what the minimum order of the gravitational model to be considered should be in order to produce realistic results that can be applied to the analysis and design of real missions. With that purpose, we have considered a perturbation model that comprises a 50x50 gravitational field and the third-body attraction from the Earth. Initially, the process of developing the theory is briefly described. Then, the discussion is focused on the search for frozen orbits, for which the effect of each harmonic term of the gravitational model is analyzed separately. As higher-order zonal harmonics are included, new families of frozen orbits can appear. In addition, the eccentricity and inclination values for which frozen orbits can exist change. This effect is very important and needs to be taken into consideration, because ignoring high-order harmonics can lead to predict the existence of frozen orbits at certain inclinations at which the frozen-orbit eccentricity actually falls beyond the impact limit. Consequently, it has been verified that, in agreement with other authors, a 50x50 gravitational model should be the minimum to be considered for real applications.