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Research on the Incomplete Constellation GPS Positioning Algorithm by a Combined Altitude and Clock Bias Model

机译:基于高度和时钟偏差模型的不完全星座GPS定位算法研究

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GPS positioning is normally required that four GPS satellites are in view at least. However, due to the frequent blockage of GPS signals in worse environmental condition, such as canyons, forests and high buildings and so on, it is difficult to receive the signals of four satellites, that is GPS incomplete constellation. Therefore, the operation of the GPS receiver may be interrupted. Aiming at the poor positioning feature under GPS incomplete constellation environment, the altitude estimating improved algorithm aiding the receiver to positioning is put forward. Moreover, an auxiliary method for GPS receiver positioning using clock bias forecast model is developed. The combined altitude and clock bias model algorithm was introduced into the pseudorange equations, which ensured the service of GPS receiver could be continuous even in incomplete constellation. Even the GPS receiver can only receive the signals of two satellites. The validation and analysis based on the real GPS data show that this proposed method increases the availability of GPS positioning.
机译:通常至少要有四个GPS卫星才能进行GPS定位。但是,由于在恶劣的环境条件下(例如峡谷,森林和高楼大厦等),GPS信号经常被阻塞,因此很难接收四颗卫星的信号,即GPS星座不完整。因此,GPS接收器的操作可能会中断。针对GPS不完整星座环境下定位性能差的问题,提出了一种有助于接收机定位的高度估计改进算法。此外,开发了一种使用时钟偏差预测模型进行GPS接收机定位的辅助方法。将高度和时钟偏差模型组合算法引入伪距方程,以确保即使在星座不完整的情况下,GPS接收机的服务也可以连续进行。甚至GPS接收器也只能接收两颗卫星的信号。基于真实GPS数据的验证和分析表明,该方法提高了GPS定位的可用性。

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