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A Study of Ionospheric Grid Modification Technique for BDS/GPS Receiver

机译:BDS / GPS接收机的电离层网格修改技术研究

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摘要

For the single-frequency GPS receiver, ionospheric delay is an important factor affecting the positioning performance. There are many kinds of ionospheric correction methods, common models are Bent model, IRI model, Klobuchar model, Ne Quick model and so on. The US Global Positioning System (GPS) uses the Klobuchar coefficients transmitted in the satellite signal to correct the ionospheric delay error for a single frequency GPS receiver, but this model can only reduce the ionospheric error of about 50% in the mid-latitudes. In the Beidou system, the accuracy of the correction delay is higher. Therefore, this paper proposes a method that using BD grid information to correct GPS ionospheric delay to improve the ionospheric delay for the BDS/GPS compatible positioning receiver. In this paper, the principle of ionospheric grid algorithm is introduced in detail, and the positioning accuracy of GPS system and BDS/GPS compatible positioning system is compared and analyzed by the real measured data. The results show that the method can effectively improve the positioning accuracy of the receiver in a more concise way.
机译:对于单频GPS接收机,电离层延迟是影响定位性能的重要因素。电离层校正方法有很多种,常见的模型有Bent模型,IRI模型,Klobuchar模型,Ne Quick模型等。美国全球定位系统(GPS)使用在卫星信号中传输的Klobuchar系数来校正单频GPS接收机的电离层延迟误差,但是该模型只能将中纬度的电离层误差降低约50%。在北斗系统中,校正延迟的精度较高。因此,本文提出了一种利用BD网格信息校正GPS电离层延迟以改善BDS / GPS兼容定位接收机的电离层延迟的方法。本文详细介绍了电离层网格算法的原理,并通过实测数据对GPS系统和BDS / GPS兼容定位系统的定位精度进行了比较和分析。结果表明,该方法可以更加简洁有效地提高接收机的定位精度。

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