Use of diversity techniques for weak GNSS signal tracking in fading environments

R. Siddakatte, A. Broumandan, G. Lachapelle
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引用次数: 2

Abstract

This research focuses on improving the GNSS signal measurement performance in harsh multipath environments. The nature of GNSS signal propagation in typical signal impeding wireless channels such as indoors and urban environments is studied. The signal power distribution, delay spread, and Doppler spread characteristics of real GNSS signals in such environments are investigated. Based on the observations obtained from this characterization, a closed-loop tracking architecture based on spatial diversity reception is proposed. The proposed algorithm is tested on real data collected using two antennas in indoor static and urban kinematic scenarios. The carrier loop tracking, code loop tracking, and pseudorange errors are compared between single antenna reception and dual antenna spatial diversity reception for different scenarios. Results show that the proposed tracking method improves the Doppler measurement by more than 50% and pseudorange measurements by 2-5 m compared to a single antenna receiver.
分集技术在衰落环境下微弱GNSS信号跟踪中的应用
本文主要研究如何提高GNSS在恶劣多径环境下的信号测量性能。研究了GNSS信号在室内和城市等典型信号干扰无线信道中的传播特性。研究了实际GNSS信号在这种环境下的功率分布、延迟扩展和多普勒扩展特性。在此基础上,提出了一种基于空间分集接收的闭环跟踪架构。在室内静态和城市动态两种场景下,对双天线采集的真实数据进行了测试。比较了不同场景下单天线接收和双天线空间分集接收的载波环跟踪、码环跟踪和伪距误差。结果表明,与单天线接收机相比,该跟踪方法的多普勒测量精度提高了50%以上,伪距测量精度提高了2 ~ 5 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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