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Single-Frequency Ionospheric-Delay Correction from BeiDou & GPS Systems for Northern Hemisphere

机译:北斗&的单频电离层延迟校正北半球GPS系统

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The range delay caused by the ionosphere layer is the major current source of error for GNSS users with single-frequency receivers. GNSS advice users to correct this type of error using ionospheric models whose coefficients are sent in their navigation messages. GPS-users use the Klobuchar model to correct this type of error. GPS navigation message contains the modela??s eight coefficients which vary on the basis of seasonal ionospheric variations and average solar flux. The correction accuracy of Klobuchar model is about 50% (rms) of the ionospheric range delay. Beidou system calculates and broadcast 8 parameters of Klobuchar model based on continuous monitoring stations. BeiDou system updates the ionospheric coefficients every two hours. GPS-Klobuchar model uses completely different coefficients than BeiDou-Klobuchar model. This research demonstrates a comparison study between the Klobuchar model using the GPS broadcast coefficients and the same model using BeiDou-coefficients. The correction accuracy offered by the two models has been judged using the most accurate International GNSS Service-Global Ionospheric Maps (IGS-GIMs) for three different-latitude stations along northern hemisphere, one station in low-latitude region, the second station is in mid-latitude region and the third station is in high-latiude region to reflect modelsa?? behaviour in different geographic regions. The study was applied over three different months of the year 2017 that each of them reflects a different activity state for the ionosphere layer. The study proves that BeiDou model is able to show the ionospherea??s day-to-day fluctuations while GPS model cana??t. It can be concluded that GPS model offers better behaviour than BeiDou model in correcting range delay in low-latitude and high-latitude geographic regions under any activity state for the ionosphere. BeiDou model offers better correction accuracy than GPS model in mid-latitude under any activity state for the ionosphere.
机译:对于使用单频接收机的GNSS用户来说,电离层引起的距离延迟是目前的主要误差来源。 GNSS建议用户使用电离层模型纠正这种类型的错误,该模型的系数在其导航消息中发送。 GPS用户使用Klobuchar模型来纠正这种类型的错误。 GPS导航消息包含modela的八个系数,这些系数根据季节性电离层变化和平均太阳通量而变化。 Klobuchar模型的校正精度约为电离层测距延迟的50%(rms)。北斗系统基于连续监测站计算并广播Klobuchar模型的8个参数。北斗系统每两个小时更新一次电离层系数。 GPS-Klobuchar模型使用的系数与BeiDou-Klobuchar模型完全不同。该研究证明了使用GPS广播系数的Klobuchar模型与使用北斗系数的相同模型之间的比较研究。这两个模型提供的校正精度已使用最精确的国际GNSS服务全球电离层地图(IGS-GIM)进行了北半球的三个不同纬度站的评估,其中一个位于低纬度地区,第二个位于中纬度地区和第三站位于高纬度地区以反映模型在不同地理区域的行为。该研究应用于2017年的三个不同月,每个月都反映了电离层的不同活动状态。研究证明,北斗模型能够显示电离层的日常波动,而GPS模型却不能。可以得出结论,在电离层任何活动状态下,GPS模型在校正低纬度和高纬度地理区域的距离延迟方面比北斗模型具有更好的行为。在电离层任何活动状态下,北斗模型在中纬度条件下都比GPS模型具有更好的校正精度。

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