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Open-loop tracking of rising and setting GNSS radio-occultation signals from an Airborne Platform: Signal model and statistical analysis

机译:开环跟踪来自机载平台的上升和设置GNSS无线电掩星信号:信号模型和统计分析

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Global Navigation Satellite System (GNSS) radio occultation (RO) is an atmospheric sounding technique based upon the change in propagation direction of low-elevation GNSS signals through the stratified atmosphere. Atmospheric water vapor profiles can be retrieved from inverting the bending-angle measurements. Open-loop (OL) tracking, in which the received RO signal is cross-correlated with a model signal that does not include refraction effects, is applied to estimate the small excess phase due to atmospheric bending. OL tracking is demonstrated on rising as well as setting satellites observed from an airborne receiver. Setting signals are tracked by processing the sampled signal in reverse, allowing the initialization of tracking after the satellite has reached a higher elevation. A model has been developed to relate the signal to noise ratio (SNR) of the complex correlation to the variance in the residual phase estimate and is used to set a threshold on the minimum SNR for OL tracking. This model is shown to agree well with experimental measurements.
机译:全球导航卫星系统(GNSS)无线电掩星(RO)是一种大气探测技术,它基于低海拔GNSS信号穿过分层大气的传播方向的变化。可以通过将弯曲角度测量值取反来获取大气水汽剖面。开环(OL)跟踪(其中接收到的RO信号与不包含折射效应的模型信号互相关)被用于估计由于大气弯曲而引起的较小的过剩相位。从机载接收器观察到的上升和设置卫星,都可以证明OL跟踪。通过对采样信号进行反向处理来跟踪设置信号,从而可以在卫星到达更高的高度后初始化跟踪。已开发出一种模型,可将复数相关性的信噪比(SNR)与残留相位估计中的方差相关联,并用于设置OL跟踪的最小SNR阈值。该模型显示与实验测量结果非常吻合。

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