Technical Concerns of Near-Far Effect in GNSS Space Service Volume (SSV)

Chen Maolin, Zhang Xingqun, Yuan Wenhan, Liang Yuan
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Abstract

Global Navigation Satellite System (GNSS) is not only widely used in terrestrial positioning, navigation and timing, more attentions have been casted on space utilities, especially in orbit determination of Low Earth Orbit (LEO) spacecraft. However, because of Near-Far Effect and many other technical concerns, GNSS has seldom been used in high precision spacecraft orbit determination at Medium Earth Orbit (MEO) and High Earth Orbit (HEO). In order to analyze and solve the Near-Far Effect that might encounter in GNSS space applications, this work studies the influence factors of Near-Far Effect, such as free space propagation loss, orbital altitude, ionosphere and troposphere Effect, the concept of Strong-to-Weak signal ratio is proposed and analyzed carefully, some results are given as well. Three Near-Far Effect mitigation technical approaches are proposed, namely positive adjustment method, FDMA proposal, and interference cancellation approach. However, more deep research is in need to do comparisons and assess the performance of these methods in future work.
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GNSS空间业务量中近远效应的技术关注
全球卫星导航系统(Global Navigation Satellite System, GNSS)不仅广泛应用于地面定位、导航和授时等领域,而且越来越受到空间应用领域的关注,特别是在近地轨道(Low Earth orbit)航天器的定轨方面。然而,由于近远效应和许多其他技术问题,GNSS很少用于中地球轨道(MEO)和高地球轨道(HEO)的高精度航天器定轨。为了分析和解决GNSS在空间应用中可能遇到的近远效应,本文研究了近远效应的影响因素,如自由空间传播损耗、轨道高度、电离层和对流层效应,提出了强弱信号比的概念并进行了详细分析,给出了一些结果。提出了三种消除近远效应的技术方法,即正调频法、FDMA法和干扰消除法。然而,在未来的工作中,需要进行更深入的研究,对这些方法的性能进行比较和评估。
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