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天基光学监视系统空间目标定轨精度仿真分析
引用本文:周庆勇,杜兰,蓝朝桢.天基光学监视系统空间目标定轨精度仿真分析[J].系统仿真学报,2010(11).
作者姓名:周庆勇  杜兰  蓝朝桢
作者单位:信息工程大学测绘学院,郑州450052;
摘    要:天基光学监视系统具有获取空间态势信息的优势,是进行空间目标监视与跟踪的重要发展方向。主要研究基于天基光学监视平台的空间目标的可见区域分析和轨道确改进定算法,仿真实现了天基监视系统对空间目标的定轨功能,分析了天基光学监视平台对高、中、低轨三类典型空间目标的定轨精度。通过仿真实验可以得出,由高低轨监视平台组成的联合监视系统提高对空间目标的轨道确定精度,其中低轨空间目标定轨精度误差约20米,中高轨空间目标定轨精度300米左右。
Abstract:
Space-based optical surveillance system has advantages accepting state information of space-objects, and is an important tendency in the realization of surveillance and tracking for resident space objects. The orbit determination theory for space objects and its cover region by space-based optical surveillance system were analyzed. The function for space objects was simulated. The accuracy of three kinds of space objects based on space-based optics surveillance system was studied. Simulation experiment shows the surveillance system which constitutes of high/low orbit surveillance platforms can improve the accuracy of space objects, and therein the orbit determination precision for low-orbit space objects reaches 20m, while that for high-orbit space objects about 300m.

关 键 词:天基监视平台  光学传感器  轨道确定  仿真  天基监视系统

Analysis of Orbit Determination Accuracy for Space Objects Based on Space-based Optical Surveillance System
ZHOU Qing-yong,DU Lan,LAN Zhao-zhen.Analysis of Orbit Determination Accuracy for Space Objects Based on Space-based Optical Surveillance System[J].Journal of System Simulation,2010(11).
Authors:ZHOU Qing-yong  DU Lan  LAN Zhao-zhen
Abstract:Space-based optical surveillance system has advantages accepting state information of space-objects, and is an important tendency in the realization of surveillance and tracking for resident space objects. The orbit determination theory for space objects and its cover region by space-based optical surveillance system were analyzed. The function for space objects was simulated. The accuracy of three kinds of space objects based on space-based optics surveillance system was studied. Simulation experiment shows the surveillance system which constitutes of high/low orbit surveillance platforms can improve the accuracy of space objects, and therein the orbit determination precision for low-orbit space objects reaches 20m, while that for high-orbit space objects about 300m.
Keywords:high-orbital surveillance platform  optics sensor  orbit determination  simulation  SBSS
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