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Doppler measurement accuracy in standard and highsensitivity global navigation satellite system receivers

机译:标准和高灵敏度全球导航卫星系统接收机中的多普勒测量精度

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摘要

Doppler frequency estimates generated by a global navigation satellite system receiver are essential for the evaluation of the user velocity. In this study, a theoretical framework allowing the evaluation of Doppler measurement accuracy is introduced. The variance of Doppler estimates is related to the carrier-to-noise density power ratio (C/N0) and the type of processing adopted by the receiver. Both standard sequential and high-sensitivity receivers adopting block processing techniques are considered. A general formula quantifying the Doppler variance is derived and applied to these two receiver architectures. Moreover, the concept of Doppler bandwidth is introduced for quantifying the amount of input noise transferred to the final Doppler estimates. The generality of the theory is validated using live GPS data and a good agreement between theoretical and empirical results is found.
机译:全球导航卫星系统接收机产生的多普勒频率估计对于评估用户速度至关重要。在这项研究中,介绍了一种可以评估多普勒测量准确性的理论框架。多普勒估计的方差与载波噪声密度功率比(C / N 0 )和接收机采用的处理类型有关。考虑了采用块处理技术的标准顺序接收机和高灵敏度接收机。得出了一个量化多普勒方差的通用公式,并将其应用于这两种接收机架构。此外,引入了多普勒带宽的概念,用于量化传输到最终多普勒估计的输入噪声量。使用实时GPS数据验证了该理论的普遍性,并且在理论和经验结果之间找到了很好的一致性。

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