首页> 外文会议>GNSS and Integrated Geospatial Applications: Geoinformatics 2006; Proceedings of SPIE-The International Society for Optical Engineering; vol.6418 >The Method for Satellite Orbit Determination and its Precision Analysis based on Bi-satellite Positioning System
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The Method for Satellite Orbit Determination and its Precision Analysis based on Bi-satellite Positioning System

机译:基于双卫星定位系统的卫星轨道确定方法及其精度分析

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摘要

Space-ground combined system is one of the current tendencies in the spacecraft measurement and control. The accomplishing of the Bi-satellite positioning system (BPS) can provide a possibility to realize our independent satellite space-ground measurement and control technology; also due to its advantages, such as all weather, all-time and relative high precision for orbit determination, so it can become a promising and efficient measurement and control means for LEO or MEO orbit determination. In this paper, founding on the actuality of this system and combining the demand for precise orbit determination of LEO and MEO, we advance the method of satellite orbit determination based on BPS, summarize its fundamental and composition, and present its observation model and flow for observation data, also research its mathematics model and method. This paper mainly researches and analyzes the system error characters and their parameter estimation in the process of orbit determination used by BPS. Finally, by simulation calculation and precision analysis, we research the correlation between the user satellite orbit determination precision and bi-satellite ephemeris error, data measurement precision and length of observation time, moreover, compare the ultimate precision influence caused by whether to estimate and deduct system error or not. All these work can afford theoretic basis for next project realization.
机译:天地结合系统是航天器测量与控制的当前趋势之一。双卫星定位系统(BPS)的完成可以为实现我们独立的卫星空地测控技术提供可能。同时,由于它具有全天候,全天候和相对高精度的定轨道等优点,因此可以成为有希望的,高效的LEO或MEO定轨道的测控手段。本文根据该系统的现状,结合对LEO和MEO精确定轨的需求,提出了基于BPS的卫星定轨方法,总结了其基础和组成,并给出了其观测模型和流程。观察数据,还研究其数学模型和方法。本文主要研究和分析了BPS在定轨过程中的系统误差特征及其参数估计。最后,通过仿真计算和精度分析,研究了用户卫星轨道确定精度与双卫星星历误差,数据测量精度和观测时间长度之间的相关性,并比较了是否估算和扣除对最终精度影响。系统错误与否。这些工作可以为下一个项目的实现提供理论依据。

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