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The Dual-frequency Post-correlation Difference Feature for Detection of Multipath and non-Line-of-Sight Errors in Satellite Navigation

机译:用于检测卫星导航中多径和非视线误差的双频后相关差特征

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Global Navigation Satellite Systems provide users with positioning in outdoor environments, however their performance in urban areas is decreased through errors caused by the reception of signals that are reflected on buildings (multipath and non-line-of-sight errors). To detect these errors, we simulated their influence on the correlator output on two carrier frequencies. Based upon the simulations, a feature using the difference between an ideal correlator output and the received correlator output was developed. This article presents the new Dual-frequency Post-correlation Difference feature and compares its performance with two methods from the bibliography. This new feature outperforms the Code-Minus-Carrier and the signal-to-noise ratio difference features in multipath and non-line-of-sight detection. Furthermore it can distinguish between multipath and non-line-of-sight reception. As a consequence, the method can be used to exclude satellites whose signals are affected by reflections, to provide a more accurate navigation solution.
机译:全球导航卫星系统为用户提供室外环境的定位,但是由于接收到反射在建筑物上的信号而导致的误差(多径误差和非视距误差)会降低其在市区的性能。为了检测这些误差,我们在两个载波频率上模拟了它们对相关器输出的影响。基于仿真,开发了利用理想相关器输出和接收到的相关器输出之间的差异的特征。本文介绍了新的双频后相关差分功能,并将其性能与参考书目中的两种方法进行了比较。在多径和非视距检测中,此新功能优于码负载波和信噪比差异功能。此外,它可以区分多径接收和非视距接收。结果,该方法可以用于排除其信号受反射影响的卫星,以提供更准确的导航解决方案。

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