不同干扰对全球定位系统定位精度的影响分析

Shang-bo Zhou, Y. Wen, Jinbao Zhang, Guodong Wang
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引用次数: 0

摘要

GPS(全球定位系统)广泛应用于各个行业,导航定位也将应用于铁路运输等行业。因此,电磁灵敏度的研究对系统的安全性具有重要意义。本研究分析了不同干扰下接收机的载噪比,分析了载噪比与伪距离方差的关系。通过MATLAB建立伪距离点定位模型,并进行蒙特卡罗仿真,得到不同干扰下的定位偏差。结果表明,随着干扰功率的不断增大,接收机的等效载波噪声比减小,伪范围方差增大;在这三种干扰中,窄带干扰比其他两种干扰影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Influence of Different Interferences on Global Position System Positioning Accuracy
GPS (global position system) are widely used in various industries, and navigation and positioning will also be used in railway transportation and other industries. Therefore, electromagnetic sensitivity research is important to the safety of the system. This study analyses the carrier-to-noise ratio of the receiver under different interferences, and analyzed the relationship between the carrier-to-noise ratio and the variance of pseudo-range. The pseudo-range point positioning model was established through MATLAB, and Monte Carlo simulation was performed to obtain the positioning deviation under different interferences. The results show that the equivalent carrier-to-noise ratio of the receiver decreases and the variance of pseudo range becomes larger, as the interference power continues to increase. Among the three types of interference, narrowband interference has a greater impact than the other two types of interference.
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