Analysis of Atmospheric Drag Acceleration and Engineering Realization of Space Target

Xiaobin Huang, Yan Zhang, Rui Xiao
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引用次数: 1

Abstract

Space target orbit determination module is an important component of space target surveillance radar system. The development of this module requires very complex aerospace dynamics knowledge, which brings great difficulties to non-orbit mechanics researchers engaged in radar system design. The core of orbit determination is the calculation of perturbation acceleration, which is the basis of high precision numerical orbit calculation. To this end, this paper takes the atmospheric drag perturbation which can not be ignored in the precise orbit determination of LEO satellite as an example, introduces its mathematical principle, gives the program design idea and function interface implementation, and makes a simulation comparison with STK. The experimental results verify the effectiveness of the interface function, and show that the function interface designed in this paper can assist researchers in radar system design.
空间目标大气阻力加速度分析与工程实现
空间目标定轨模块是空间目标监视雷达系统的重要组成部分。该模块的开发需要非常复杂的航天动力学知识,这给从事雷达系统设计的非轨道力学研究人员带来了很大的困难。轨道确定的核心是摄动加速度的计算,它是高精度数值轨道计算的基础。为此,本文以LEO卫星精确定轨中不可忽视的大气阻力摄动为例,介绍了其数学原理,给出了程序设计思路和功能接口实现,并与STK进行了仿真比较,实验结果验证了接口函数的有效性,表明本文设计的功能接口可以辅助研究人员进行雷达系统设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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