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High Resolution GNSS Delay Estimation for Vehicular Navigation Utilizing a Doppler Combining Technique

机译:利用多普勒组合技术的车载导航高分辨率GNSS时延估计

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摘要

Multipath propagation can cause significant impairments to the performance of Global Navigation Satellite System (GNSS) receivers and is often the dominant source of accuracy degradation for high precision GNSS applications. Commonly used time-of-arrival estimation techniques cannot provide the required estimation accuracy in severely dense multipath environments such as urban canyons. Multipath components are highly correlated and this results in a rank deficiency of the signal autocorrelation matrix. In this paper the Doppler spectrum broadening of the fast fading channel resulting from the motion of the receiver or surrounding objects is employed to decorrelate signal reflections for the purpose of high-resolution estimation of multipath delays through the subspace-based Multiple Signal Classification (MUSIC) technique. Specifically, delay-domain correlator outputs at different Doppler frequencies are combined to enhance the rank of the signal autocorrelation matrix. Simulation and results of real data collected in an urban environment (downtown Calgary) are presented to compare the performance of the proposed method with the spatial-temporal-diversity-based MUSIC technique and a widely available algorithm in commercial GNSS receivers, namely the double-delta correlator technique. The performance metrics are based upon pseudorange and positioning errors, which are derived using an accurate reference trajectory established using a high precision GNSS-INS integrated system.
机译:多径传播会严重损害全球导航卫星系统(GNSS)接收器的性能,并且通常是高精度GNSS应用精度下降的主要来源。在严重密集的多径环境(例如城市峡谷)中,常用的到达时间估算技术无法提供所需的估算精度。多径分量是高度相关的,这导致信号自相关矩阵的秩不足。在本文中,由接收器或周围物体的运动引起的快速衰落信道的多普勒频谱展宽被用于去相关信号反射,以便通过基于子空间的多信号分类(MUSIC)来高分辨率估计多径延迟。技术。具体而言,将不同多普勒频率上的延迟域相关器输出进行组合,以增强信号自相关矩阵的秩。提出了在城市环境(卡尔加里市中心)中收集的真实数据的仿真结果,以比较该方法与基于时空分集的MUSIC技术和商用GNSS接收机中广泛使用的算法(即双频)的性能。 Delta相关器技术。性能指标基于伪距和定位误差,这些误差是通过使用高精度GNSS-INS集成系统建立的精确参考轨迹得出的。

著录项

  • 来源
    《The Journal of Navigation》 |2014年第4期|579-602|共24页
  • 作者单位

    Position, Location and Navigation (PLAN) Group, Department of Geomatics Engineering, Schulich School of Engineering, University of Calgary;

    Position, Location and Navigation (PLAN) Group, Department of Geomatics Engineering, Schulich School of Engineering, University of Calgary;

    Position, Location and Navigation (PLAN) Group, Department of Geomatics Engineering, Schulich School of Engineering, University of Calgary;

    Position, Location and Navigation (PLAN) Group, Department of Geomatics Engineering, Schulich School of Engineering, University of Calgary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multipath; Delay Estimation; Fast Fading Channel; Doppler Spread and Combining; MUSIC;

    机译:多路径延迟估计;快速衰落信道;多普勒扩展和合并;音乐;

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