A multiple-frequency GPS software receiver design based on a Vector tracking loop

S. Peng, Y. Morton, Ruihui Di
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引用次数: 27

Abstract

This paper presents the implementation and testing results of a Vector tracking loop (VTL) in the software-based GPS receiver. The VTL is developed based on the extended Kalman filter (EKF) with adaptive covariance matrices. Both scalar tracking loop (STL) and VTL are implemented. Once an error in the scalar loop is detected, the results from the VTL are used to assist the STL. The performance of the VTL is compared with the traditional STL with three different data sets: raw GPS RF data with short signal outages, RF data with strong scintillation impacts collected during the last solar maximum, and high dynamic data with long interval signal outages from a GPS simulator. The results confirm the performance improvement of the VTL over scintillation impacts and show that the VTL can maintain signal lock during long intervals of signal outage if the satellite ephemerides are available and the pseudorange estimation is within one code chip accuracy. The dynamic performance improvement of the VTL is verified as well. The results show the potential of robust tracking based on VTL during scintillation and interference.
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基于矢量跟踪回路的多频GPS软件接收机设计
本文介绍了基于软件的GPS接收机中矢量跟踪环路的实现和测试结果。基于自适应协方差矩阵的扩展卡尔曼滤波(EKF)发展了自适应协方差矩阵。同时实现了STL (scalar tracking loop)和VTL。一旦检测到标量环路中的错误,VTL的结果将用于辅助STL。利用三种不同的数据集:具有短信号中断的原始GPS射频数据、在最后一次太阳极大期收集的具有强闪烁影响的射频数据以及来自GPS模拟器的具有长间隔信号中断的高动态数据,对VTL与传统STL的性能进行了比较。结果表明,在卫星星历表可用且伪距估计精度在一个码片精度范围内的情况下,虚拟带库可以在长时间的信号中断期间保持信号锁定。同时验证了VTL的动态性能提升。结果表明,在闪烁和干扰条件下,基于虚拟带库的鲁棒跟踪具有很大的潜力。
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