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Characterization and mitigation of multipath fading on multi-frequency GNSS signals in urban environment

机译:城市环境中多频GNSS信号的多径褪色的特征及减轻

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摘要

The global navigation satellite systems (GNSS) receiver is likely to experience performance degradation in the presence of multipath interferences in indoor and urban canyon environments. There will be multiple reflected signals arriving at the receiver antenna from different paths and directions regarding the different locations of the nearby constructions, causing significant fluctuations and distortions on the amplitude and phase of the direct signals. This is the so-called multipath fading effects and usually exhibit with the random features of temporal, spatial, and frequency diversity across the signal bands. To have a better understanding of the multipath fading effects, a live test was conducted near Lujiazui CBD area in Shanghai. The collected data were processed to characterize the signal attenuations and phase fluctuations on multi-frequency GNSS signals via the detrend code delay, carrier phase, and navigation bit errors. The resulting scintillation index on amplitude, code delay, and carrier phase, e.g., S_4, σ_Φ and σ_τ can be calculated. Based on these multipath features, the inter-frequency aiding strategy will be utilized for the multipath mitigations in the multi-frequency tracking loop design. The results demonstrate the effectiveness of the multi-frequency tracking algorithm in the urban environment.
机译:全球导航卫星系统(GNSS)接收器可能会在室内和城市峡谷环境中存在多径干扰的情况下进行性能下降。将有多个反射信号到达来自关于附近结构的不同位置的不同路径和方向的接收器天线,导致直接信号的幅度和相位的显着波动和失真。这是所谓的多径衰落效果,通常具有在信号频带上的时间,空间和频率分集的随机特征。为了更好地了解多径衰落效果,在上海陆家嘴CBD地区附近进行了一项现场测试。处理收集的数据以使信号衰减和多频GNSS信号的信号衰减和相位波动通过DEVREND码延迟,载波相位和导航位错误。可以计算产生的幅度,代码延迟和载波相位的闪烁指数,例如S_4,σ_φ和Σ_τ。基于这些多径特征,将用于多频跟踪环形设计中的多径缓解频率的频率相互作用。结果证明了城市环境中多频跟踪算法的有效性。

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