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Efficient GPS receiver DCB estimation for ionosphere modeling using satellite-receiver geometry changes

机译:使用卫星接收器几何形状变化进行电离层建模的高效GPS接收器DCB估计

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A new and efficient algorithm using the geometry conditions between satellite and tracking receivers is proposed to determine the receiver differential code bias (DCB) using permanent reference stations. This method does not require a traditional single-layer ionosphere model and can be used for estimating DCBs of receivers in a regional network as long as one of the receiver DCBs is already known. The main underlying rationale for this algorithm is that the magnitude of the signal delay caused by the ionosphere is, under normal conditions, highly dependent on the geometric range between the satellite and the receiver. The proposed algorithm was tested with the Ohio Continuously Operating Reference Stations (CORS) sub-network data. The results show that quality comparable to the traditional DCB estimation method is obtainable by implementing this simple algorithm.
机译:提出了一种利用卫星和跟踪接收机之间的几何条件的新型高效算法,以确定使用永久参考站的接收机差分码偏差(DCB)。该方法不需要传统的单层电离层模型,并且只要已知一个接收器DCB,即可用于估计区域网络中接收器的DCB。该算法的主要基本原理是,在正常条件下,由电离层引起的信号延迟的大小在很大程度上取决于卫星与接收器之间的几何范围。使用俄亥俄州连续运行参考站(CORS)子网数据对提出的算法进行了测试。结果表明,通过实现该简单算法,可以获得与传统DCB估计方法相当的质量。

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