Guo Wenfei, Lin Tao, Niu Xiaoji, Shi Chuang, Zhang Hongping
GNSS Research Center, Wuhan University, Wuhan 430079, China.
Department of Geomatrics Engineering, University of Calgary, Calgary, AB T2N 1N4, Canada.
Sensors (Basel). 2015 Oct 1;15(10):25399-415. doi: 10.3390/s151025399.
In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal degraded environments, a dual antenna joint carrier tracking loop is proposed and evaluated. This proposed tracking loop processes inputs from two antennas, namely the master antenna and the slave antenna. The master antenna captures signals in open-sky environments, while the slave antenna capture signals in degraded environments. In this architecture, a Phase Lock Loop (PLL) is adopted as a master loop to track the carrier phase of the open-sky signals. The Doppler frequency estimated by this master loop is utilized to assist weak carrier tracking in the slave loop. As both antennas experience similar signal dynamics due to satellite motion and clock frequency variations, a much narrower loop bandwidth and possibly a longer coherent integration can be adopted to track the weak signals in slave channels, by utilizing the Doppler aid from master channels. PLL tracking performance is affected by the satellite/user dynamics, clock instability, and thermal noise. In this paper, their impacts on the proposed phase tracking loop are analyzed and verified by both simulation and field data. Theoretical analysis and experimental results show that the proposed loop structure can track degraded signals (i.e., 18 dB-Hz) with a very narrow loop bandwidth (i.e., 0.5 Hz) and a TCXO clock.
为了在信号劣化环境中跟踪全球导航卫星系统(GNSS)信号的载波相位,提出并评估了一种双天线联合载波跟踪环路。该提议的跟踪环路处理来自两个天线的输入,即主天线和从天线。主天线在开阔天空环境中捕获信号,而从天线在劣化环境中捕获信号。在这种架构中,采用锁相环(PLL)作为主环路来跟踪开阔天空信号的载波相位。由该主环路估计的多普勒频率用于辅助从环路中的弱载波跟踪。由于卫星运动和时钟频率变化,两个天线经历相似的信号动态,因此通过利用来自主通道的多普勒辅助,可以采用更窄的环路带宽以及可能更长的相干积分来跟踪从通道中的弱信号。PLL跟踪性能受卫星/用户动态、时钟不稳定性和热噪声影响。本文通过仿真和现场数据对它们对提议的相位跟踪环路的影响进行了分析和验证。理论分析和实验结果表明,所提议的环路结构能够以非常窄的环路带宽(即0.5 Hz)和一个温补晶体振荡器(TCXO)时钟跟踪劣化信号(即18 dB-Hz)。