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Evaluation of the Effect of Radio Frequency Interference on Global Positioning System (GPS) Accuracy via GPS Simulation

机译:通过GPS仿真评估射频干扰对全球定位系统(GPS)精度的影响

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摘要

In this study, Global positioning system (GPS) simulation is employed to study the effect of radio frequency interference (RFI) on the accuracy of two handheld GPS receivers; Garmin GPSmap 60CSx (evaluated GPS receiver) and Garmin GPSmap 60CS (reference GPS receiver). Both GPS receivers employ the GPS LI coarse acquisition (C/A) signal. It was found that with increasing interference signal power level, probable error values of the GPS receivers increase due to decreasing carrier-to-noise density (C/N_0) levels for GPS satellites tracked by the receivers. Varying probable error patterns are observed for readings taken at different locations and times. This was due to the GPS satellite constellation being dynamic, causing varying GPS satellite geometry over location and time, resulting in GPS accuracy being location/time dependent. In general, the highest probable error values were observed for readings with the highest position dilution of precision (PDOP) values, and vice versa.
机译:在这项研究中,采用全球定位系统(GPS)仿真来研究射频干扰(RFI)对两个手持式GPS接收机精度的影响。 Garmin GPSmap 60CSx(评估版GPS接收器)和Garmin GPSmap 60CS(参考GPS接收器)。两个GPS接收器均使用GPS LI粗采集(C / A)信号。已经发现,随着干扰信号功率电平的增加,由于接收机跟踪的GPS卫星的载波噪声密度(C / N_0)电平降低,GPS接收机的可能的误差值也随之增加。对于在不同位置和时间获取的读数,观察到各种可能的错误模式。这是由于GPS卫星星座是动态的,导致GPS卫星几何形状随位置和时间变化,导致GPS精度与位置/时间有关。通常,对于具有最高位置稀释精度(PDOP)值的读数,观察到最高可能的误差值,反之亦然。

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