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A Subspace-based Spatial and Temporal Multipath Mitigation for Multi-antenna GPS Receiver

机译:多天线GPS接收机的基于子空间的时空多径缓解

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In this paper, a novel subspace-based spatial and temporal mitigation method is proposed for GPS signal tracking by a multi-antenna receiver in multipath environment. Since the tracking result from the delay-lock-loop has been polluted by the multipath incidence, we only use it to follow the code phase shift but design a subspace-based estimator to distinguish different incident rays by their spatial and temporal signatures. The carrier phase is firstly extended into the signatures because of the signal BPSK modulation. A subspace rotation invariance in space and DOAM-like correlation matrices are both established by the property of the receiving array, and a forward and backward space smooth is also taken here to solve the coherent problem by multipath. The angle-of-arrivals and signatures are estimated from the eigenvalues and eigenvectors from the cross-correlation matrix, the signatures also provide the relative delay and carrier phase estimates with respect to the tracking loop. The line-of-sight ray's estimates are picked up by its first arrival character, and a modified delay tracking output without multipath bias is finally achieved by combining tracking loop and the subspace estimator results together. Simulation results prove that compared with the existing methods, such as the narrow early-minus-late and the multipath estimating delay lock loop, the proposed method has the best multipath mitigation in the delay estimation.
机译:本文提出了一种新的基于子空间的时空缓解方法,用于多径环境下多天线接收机的GPS信号跟踪。由于延迟锁定环的跟踪结果已被多径入射污染,因此我们仅使用它跟踪代码相移,但设计了基于子空间的估计器,以通过其空间和时间特征来区分不同的入射光线。由于信号BPSK调制,首先将载波相位扩展到签名中。空间的子空间旋转不变性和类似DOAM的相关矩阵都是通过接收阵列的属性来建立的,这里还采用了前向和后向空间平滑来解决多径相干问题。从互相关矩阵的特征值和特征向量估计到达角和特征,特征还提供相对于跟踪环路的相对延迟和载波相位估计。视线射线的估计值是由其第一个到达字符获得的,最后通过将跟踪环和子空间估计器结果组合在一起,获得了没有多径偏差的改进的延迟跟踪输出。仿真结果表明,与现有方法相比,该方法在延迟估计中具有最佳的多径缓和效果,与现有方法相比,该方法具有较窄的早负延迟和多径估计延迟锁定环。

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