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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Analytic characterization of measurement uncertainty and initial orbit determination on orbital element representations
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Analytic characterization of measurement uncertainty and initial orbit determination on orbital element representations

机译:测量不确定度的解析表征和轨道元素表示的初始轨道确定

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This paper presents an approach to characterize the uncertainty associated with the state vector obtained from the Herrick-Gibbs orbit determination approach using transformation of variables. The approach is applied to estimate the state vector and its probability density function for objects in low Earth orbit using sparse observations. The state vector and associated uncertainty estimates are computed in Cartesian coordinates and Keplerian elements. The approach is then extended to accommodate the J_2 perturbation where the state vector is written in terms of mean orbital elements. The results obtained from the analytical approach presented in this paper are validated using Monte Carlo simulations and compared with the often utilized similarity transformation for Kepler, mean, and nonsingular elements. The measurement uncertainty characterization obtained is used to initialize conventional nonlinear filters as well as operate a Bayesian approach for orbit determination and object tracking.
机译:本文提出了一种方法,该方法用于表征使用变量转换从Herrick-Gibbs轨道确定方法获得的状态向量相关的不确定性。该方法适用于使用稀疏观测来估计低地球轨道物体的状态向量及其概率密度函数。状态向量和相关的不确定性估计是在笛卡尔坐标和开普勒元素中计算的。然后将该方法扩展为适应J_2扰动,其中状态矢量是根据平均轨道元素来写的。通过蒙特卡洛模拟验证了从本文提出的分析方法获得的结果,并将其与开普勒,均值和非奇异元素的常用相似性变换进行了比较。获得的测量不确定度表征可用于初始化常规非线性滤波器,以及使用贝叶斯方法进行轨道确定和目标跟踪。

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