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Effect and mitigation of oscillator vibration-induced phase noise on carrier phase tracking

机译:振荡器振动诱导相位噪声对载波相位跟踪的影响及减轻

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摘要

The influence of vibration-induced oscillator phase noise on carrier phase tracking of a GNSS receiver is analyzed. We show that when the oscillator is vibrating, the vibration-induced oscillator noise is increased and the carrier phase tracking is affected. In order to mitigate the influence of the vibration-induced oscillator phase noise on carrier phase tracking, a vector tracking structure based on an extended Kalman filter called vector phase tracking loop (VPLL) is proposed. In this method, an individual phase lock loop (PLL) for each channel is used to track the satellite-dependent parameters such as atmospheric delay, and a common vector loop is integrated for common parameters tracking such as the receiver clock. The performance of the conventional PLL and the proposed VPLL under oscillator vibration is compared using data collected from a simulator and from a field test. Different PLL bandwidths are tested in order to consider different operating conditions. The test results show that when similar thermal noise error is present, the proposed method can improve the carrier phase tracking compared to conventional PLL.
机译:分析了振动引起的振荡器相位噪声对GNSS接收器的载波相位跟踪的影响。我们表明,当振荡器振动时,振动引起的振荡器噪声增加并且载波相位跟踪受到影响。为了减轻振动引起的振荡振荡器相位噪声对载波相位跟踪的影响,提出了一种基于扩展卡尔曼滤波器的矢量跟踪结构,称为矢量相位跟踪环(VPLL)。在该方法中,每个信道的单独锁环(PLL)用于跟踪诸如大气延迟的卫星相关参数,并且对诸如接收器时钟的公共参数跟踪集成了公共矢量环。使用从模拟器收集的数据和现场测试比较常规PLL和所提出的VPLL在振荡器振动下的性能。测试不同的PLL带宽以考虑不同的操作条件。测试结果表明,当存在类似的热噪声误差时,与传统PLL相比,所提出的方法可以改善载波相位跟踪。

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