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Monitoring and Mitigation of GNSS Multipath Fading Utilizing Diversity Reception

机译:利用分集接收来监测和缓解GNSS多径衰落

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The multipath fading independency between different Global Navigation Satellite System (GNSS) frequency bands and space-separated antennas can be used to improve robustness of high-precision GNSS receivers in harsh urban environments. This research focuses on a new sensitive and robust fading monitoring architecture for GNSS diversity branches, and implementation of the method on an Adaptive Diversity reception-based Tracking Loop (ADTL). Firstly, fluctuations in the amplitude and phase of multipath fading signals are characterized. Performance of different design parameters in the fading monitoring method is analyzed in details. Next, diversity combining strategies including the non-linear Selective Combining (SC) and the Maximum-Ratio Combining (MRC) are utilized in ADTL for different fading conditions. Experimental results with Monte-Carlo simulation and real GNSS fading signals demonstrated that: (1) the proposed novel method can achieve robust and sensitive fading monitoring with response delay less than 20 ms; (2) Compared with traditional Phase Lock Loops (PLLs), the ADTL algorithm significantly reduced the navigation bit error rate due to half-cycle sudden-phase change caused by phase losing of lock.
机译:不同的全球导航卫星系统(GNSS)频段和空间分隔的天线之间的多径衰落独立性可用于提高恶劣城市环境中高精度GNSS接收机的鲁棒性。这项研究的重点是针对GNSS分集分支的新型敏感且鲁棒的衰落监视架构,以及该方法在基于自适应分集接收的跟踪环路(ADTL)上的实现。首先,表征多径衰落信号的幅度和相位的波动。详细分析了衰落监测方法中不同设计参数的性能。接下来,包括非线性选择组合(SC)和最大比率组合(MRC)在内的分集组合策略在ADTL中用于不同的衰落条件。蒙特卡罗仿真和实际GNSS衰落信号的实验结果表明:(1)提出的新方法可以实现鲁棒且灵敏的衰落监测,响应延迟小于20 ms; (2)与传统的锁相环(PLL)相比,ADTL算法显着降低了由于锁相丢失引起的半周期突然相位变化而导致的导航误码率。

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