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Adaptive Tracking Algorithm of Weak GNSS Signal

机译:弱GNSS信号的自适应跟踪算法

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摘要

The receiver of a global navigation satellite system (GNSS) is likely to lose tracking for a GNSS signal in some degraded environments. To solve this problem, this paper designs a new adaptive tracking algorithm for GNSS signals. First, we design an error extraction module to extract phase errors so that a CTL can estimate phase errors without using a loop discriminator, which can reduce the requirements of the carrier-to-noise ratio (CNR) of GNSS signals. Second, we design a motion detection module to detect the real-time movement status of GNSS receivers. Then, using its detecting results as inputs, we design an algorithm to automatically make the CTL switch between a second-order loop and a third-order loop. Third, we design a bandwidth-adjusting module to adjust the bandwidth of CTL, according to the CNR and the movement status of a GNSS receiver. Finally, a simulation is performed to verify that our adaptive carrier tracking algorithm can effectively improve the precision of CTL, as well as enhance its dynamic range.
机译:全局导航卫星系统(GNSS)的接收器可能会在一些降级的环境中丢失GNSS信号的跟踪。为了解决这个问题,本文为GNSS信号设计了一种新的自适应跟踪算法。首先,设计一个错误提取模块以提取相位误差,使得CTL可以在不使用环路鉴别器的情况下估计相位误差,这可以降低GNSS信号的载波信噪比(CNR)的要求。其次,我们设计运动检测模块,以检测GNSS接收器的实时移动状态。然后,使用其检测结果作为输入,我们设计了一种算法,可以自动使CTL在二阶循环和三阶循环之间进行CTL切换。第三,根据CNR和GNSS接收器的移动状态,设计带宽调整模块以调整CTL的带宽。最后,执行模拟以验证我们的自适应载波跟踪算法可以有效地提高CTL的精度,以及增强其动态范围。

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