首页> 外文会议>Brazilian Colloquium on Orbital Dynamics >Orbital Disturbance Analysis due to the Lunar Gravitational Potential and Deviation Minimization through the Trajectory Control in Closed Loop
【24h】

Orbital Disturbance Analysis due to the Lunar Gravitational Potential and Deviation Minimization through the Trajectory Control in Closed Loop

机译:由于月球重力潜力和偏移通过闭环控制的轨迹控制而导致的轨道干扰分析

获取原文

摘要

A study evaluating the influence due to the lunar gravitational potential, modeled by spherical harmonics, on the gravity acceleration is accomplished according to the model presented in Konopliv (2001). This model provides the components x, y and z for the gravity acceleration at each moment of time along the artificial satellite orbit and it enables to consider the spherical harmonic degree and order up to100. Through a comparison between the gravity acceleration from a central field and the gravity acceleration provided by Konopliv's model, it is obtained the disturbing velocity increment applied to the vehicle. Then, through the inverse problem, the Keplerian elements of perturbed orbit of the satellite are calculated allowing the orbital motion analysis. Transfer maneuvers and orbital correction of lunar satellites are simulated considering the disturbance due to non-uniform gravitational potential of the Moon, utilizing continuous thrust and trajectory control in closed loop. The simulations are performed using the Spacecraft Trajectory Simulator-STRS, Rocco (2008), which evaluate the behavior of the orbital elements, fuel consumption and thrust applied to the satellite over the time.
机译:根据Konopliv(2001)中呈现的模型,完成评估由球形谐波建模的月球重力潜力的影响。该模型为沿着人造卫星轨道的每次时刻提供了对重力加速的组件x,y和z,并且它可以考虑球形谐波度并达到100。通过从中心场和Konopliv模型提供的重力加速度的重力加速度的比较,获得施加到车辆的干扰速度增量。然后,通过逆问题,计算卫星的扰动轨道的开纱元件允许轨道运动分析。考虑到月球的非均匀引力潜力,模拟了月球卫星的转移演习和轨道矫正,利用闭环中的连续推力和轨迹控制。使用航天器轨迹模拟器-trs,rocco(2008)进行模拟,该rocco(2008),它在时间上评估轨道元素,燃料消耗和推力的行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号