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Multilag frequency estimation for high-order BOC signals in the acquisition stage

机译:采集阶段高阶BOC信号的多延迟频率估计

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摘要

In the context of global navigation satellite systems, this paper addresses the problem of refining the Doppler frequency estimation provided in the acquisition stage for highorder binary offset carrier (BOC) signals in post-correlation. The refinement of Doppler frequency must be done because the estimation obtained from the acquisition stage is not usually accurate enough to track the signal in the tracking stage. In this work, we only use the cross-ambiguity function (CAF) created in the acquisition stage to perform the refinement. A least squares estimator has been already applied to mitigate this problem. We propose a new technique, referred to as multilag least squares estimator, which improves the performance of the least squares estimator by exploiting the autocorrelation shape of high-order BOC signals. Moreover, the Cramer-Rao bound and the expected Cramer-Rao bound are derived as benchmark to compare the performance of the least squares and multilag least squares estimators.
机译:在全球导航卫星系统的背景下,本文解决了在后相关中细化在采集阶段为高阶二进制偏移载波(BOC)信号提供的多普勒频率估计的问题。必须对多普勒频率进行细化,因为从采集阶段获得的估计值通常不够准确,无法在跟踪阶段跟踪信号。在这项工作中,我们仅使用在获取阶段创建的跨歧义函数(CAF)进行优化。最小二乘估计器已经被应用来减轻这个问题。我们提出了一种称为多时差最小二乘估计器的新技术,该技术通过利用高阶BOC信号的自相关形状来改善最小二乘估计器的性能。此外,以Cramer-Rao界和预期的Cramer-Rao界为基准,以比较最小二乘估计和多滞后最小二乘估计量的性能。

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