论文标题
卫星相对运动建模和通过节点元件进行估计
Satellite Relative Motion Modeling and Estimation via Nodal Elements
论文作者
论文摘要
在本文中,提出了两个绕着中央体的卫星之间的相对运动的新参数化。参数化基于节点元素:相对于节点的相对线描述轨道几何形状的一组角度。这些与经典的轨道元素结合使用,以产生非发挥相对运动描述。建立了由新参数化产生的确切的非线性,干扰的动态模型。提出的参数集捕获了基本的开普勒不变性,同时与局部轨道坐标保持了简单的关系。仅通过利用这些功能来设计仅角度的相对导航过滤器和避免碰撞方案。在小行星飞行任务的案例研究中验证了导航解决方案。结果表明,可以在估计过程中尽早检测到碰撞,这使人们可以及时发行。
In this paper, a new parametrization of the relative motion between two satellites orbiting a central body is presented. The parametrization is based on the nodal elements: a set of angles describing the orbit geometry with respect to the relative line of nodes. These are combined with classical orbital elements to yield a nonsingular relative motion description. The exact nonlinear, perturbed dynamic model resulting from the new parametrization is established. The proposed parameter set captures the fundamental Keplerian invariants, while retaining a simple relationship with local orbital coordinates. An angles-only relative navigation filter and a collision avoidance scheme are devised by exploiting these features. The navigation solution is validated on a case study of an asteroid flyby mission. It is shown that a collision can be detected early on in the estimation process, which allows one to issue a timely evasive maneuver.