Multipath performance analysis of GNSS navigation signals

He Chengyan, Guo Ji, Lu Xiaochun, Lu Jun
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引用次数: 4

Abstract

Nowadays, multipath remains as an unsolved key problem for high precision applications, such as satellite navigation and position. Because GNSS broadcasted signals are subject to reflection and diffraction, just like any other type of electromagnetic waves, multipath is caused by the reception of direct signal together with the reflected or/and diffracted signals at the same time. Multipath will result in errors in pseudorange measurement and carrier phase measurement, and thus affect the positioning accuracy. To verify the effects of multipath propagation on positioning performance, the principle of multipath is introduced in the beginning of this paper. Then based on a simulation platform and mathematical verifying model, the multipath performance and its impact on positioning performance of received GNSS signal is comprehensively demonstrated from different aspects, such as pseudorange multipath error, waveform shape, modulation error, and correlation characteristics and so on. Results indicate the degradation of positioning performance when multipath signals were present, causing position error with several meters to tens of meters. Those results and data we have obtained from this paper could be used as a valuable reference for BDS future signal design and system constructions.
GNSS导航信号的多径性能分析
目前,在卫星导航和定位等高精度应用中,多路径仍然是一个未解决的关键问题。由于GNSS广播信号与任何其他类型的电磁波一样,都会受到反射和衍射的影响,因此多径是由直接信号与反射或/和衍射信号同时接收而产生的。多路径会导致伪距测量和载波相位测量误差,从而影响定位精度。为了验证多径传播对定位性能的影响,本文首先介绍了多径原理。然后基于仿真平台和数学验证模型,从伪距多径误差、波形形状、调制误差、相关特性等不同方面全面论证了接收GNSS信号的多径性能及其对定位性能的影响。结果表明,多径信号存在时,定位性能下降,定位误差在几米到几十米之间。本文所获得的结果和数据可为未来北斗系统的信号设计和系统建设提供有价值的参考。
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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