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Robust GNSS signal tracking algorithm based on vector tracking loop under ionospheric scintillation conditions

机译:电离层闪烁条件下基于矢量跟踪环的鲁棒GNSS信号跟踪算法

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Ionospheric scintillation can cause GNSS (Global Navigation Satellite System) signal with severe random fluctuations, leading to the loss of tracking loop, which makes the GNSS receiver unable to provide normal positioning service. This paper proposes a robust GNSS signal tracking algorithm based on vector delay/frequency lock loop (VDFLL) under ionospheric scintillation, in order to accomplish information sharing between all channels and adaptive regulation of loop noise bandwidth by using a Kalman filter, which allows it to adapt to ionospheric scintillation. Firstly it presents the basic theory of VDFLL. Then introduces the VDFLL into the anti-scintillation loop and completes the design of the anti-scintillation loop. Lastly the robust tracking algorithm based on VDFLL is implemented in a software receiver. The simulation results show that: when the scintillation index S4 is 0.9, the Doppler frequency standard deviation of the traditional scalar tracking loop (STL) is 0.4204, however, the Doppler frequency standard deviation of the anti-scintillation tracking algorithm based on VDFLL proposed in this paper is 10.6188. It can be seen that the anti-scintillation algorithm proposed in this paper has a better tracking performance under strong ionospheric scintillation situation.
机译:电离层闪烁会导致GNSS(全球导航卫星系统)信号出现严重的随机波动,从而导致跟踪环路丢失,从而使GNSS接收器无法提供正常的定位服务。本文提出了一种在电离层闪烁下基于矢量延迟/锁频环(VDFLL)的鲁棒GNSS信号跟踪算法,以实现所有通道之间的信息共享和卡尔曼滤波器的自适应调节环路噪声带宽,从而使其能够适应电离层闪烁。首先介绍了VDFLL的基本理论。然后将VDFLL引入到防闪烁回路中,并完成防闪烁回路的设计。最后,在软件接收器中实现了基于VDFLL的鲁棒跟踪算法。仿真结果表明:当闪烁指数S4为0.9时,传统标量跟踪环(STL)的多普勒频率标准偏差为0.4204,而基于VDFLL的反闪烁跟踪算法的多普勒频率标准偏差则提出了。本文为10.6188。可以看出,本文提出的防闪烁算法在强电离层闪烁情况下具有较好的跟踪性能。

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