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GPS fine time delay estimation based on signal separation estimation theory

机译:基于信号分离估计理论的GPS精细时延估计

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The signal multipath effect is one of the main reasons which lead to positioning error in the Global Positioning System (GPS). Although the differential technology can improve the positioning accuracy, the differential GPS system still can't eliminate the positioning error caused by multipath signals, the reference stations and users being in different geographical environment. In the light of the GPS multipath signal model, this paper presents a GPS time delay estimation algorithm based on signal separation estimation theory. Firstly, Doppler frequency is estimated when the signal delay is unknown. Then, we use the estimated Doppler frequency to get signal delay information with signal separation estimation theory. In addition, we consider the previous estimated results as the initial value and a two-dimension optimization method is implemented in a small range for further improving the estimation accuracy. It can be shown from the simulation results that this method which is able to effectively eliminate the multipath has a better performance compared with the conventional method and narrow correlator spacing algorithm.
机译:信号多径效应是导致全球定位系统(GPS)中定位错误的主要原因之一。尽管差分技术可以提高定位精度,但差分GPS系统仍无法消除由于多径信号,参考站和用户处于不同地理环境而引起的定位误差。针对GPS多径信号模型,提出了一种基于信号分离估计理论的GPS时延估计算法。首先,当信号延迟未知时估计多普勒频率。然后,通过信号分离估计理论,利用估计的多普勒频率获得信号延迟信息。另外,我们将先前的估计结果视为初始值,并在较小范围内实施了二维优化方法,以进一步提高估计精度。从仿真结果可以看出,与常规方法和窄相关器间隔算法相比,该方法能够有效消除多径现象,具有更好的性能。

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