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An adaptive inter-frequency aiding carrier tracking algorithm for the Mountain-top GPS radio occultation signal

机译:山顶GPS无线电掩星信号的自适应间频率驱动载波跟踪算法

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Structures in atmospheric refractivity in the moist lower troposphere can cause scintillation of GPS radio occultation (RO) signals. The RO signal scintillation is characterized by rapid fluctuations in signal carrier phase and deep amplitude fading, which prevent RO receivers from maintaining lock of the signals at low altitudes. This paper presents an initial implementation of an adaptive inter-frequency aiding carrier tracking (I-FACT) algorithm to enable improved tracking performances of the scintillating RO signals. To evaluate the performance of the algorithm, real intermediate frequency (IF) data collected during a mountain-based radio occultation experiment is processed using the I-FACT algorithm as well as a conventional phase lock loop (PLL), an open loop (OL), and a single-frequency adaptive carrier tracking (S-FACT) algorithm. The improved performances of the I-FACT over the other algorithms as well as its limitations are presented in this paper.
机译:潮湿降层中大气折射率的结构可导致GPS无线电掩星(RO)信号的闪烁。 RO信号闪烁的特征在于信号载波相位和深幅度衰落的快速波动,这防止RO接收器在低海拔处保持信号的锁定。本文介绍了自适应间频率驱动载波跟踪(I-FACT)算法的初始实现,以实现闪烁RO信号的改进的跟踪性能。为了评估算法的性能,使用I-FARF算法以及传统的相位锁环(PLL)处理在基于山的无线电掩星实验期间的实际中频(IF)数据,开环(OL)处理和单频自适应载波跟踪(S-FACT)算法。本文提出了对其他算法的I-FARE的改进性能以及其限制。

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