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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Noniterative Filter-Based Maximum Likelihood Estimators for GNSS Signal Tracking
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Noniterative Filter-Based Maximum Likelihood Estimators for GNSS Signal Tracking

机译:基于非迭代滤波器的GNSS信号最大似然估计器

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摘要

This paper presents alternate forms of a signal tracking algorithm for Global Navigation Satellite System (GNSS) receivers that use a maximum likelihood estimation (MLE) technique. The cost function of the MLE for estimating signal parameters such as code delay, carrier phase, and Doppler frequency is used to derive discriminator functions to create error signals from incoming and reference signals. Assuming a code-free signal and an additive white Gaussian noise, we derive an efficient, practical form of general purpose signal tracking algorithms by using a noniterative MLE approach for arbitrary spreading codes and modulation schemes in accordance with computational efficiency. Two versions of an MLE algorithm are derived. The first is a coherent MLE algorithm derived from the gradient of the log-likelihood cost function for signal parameters. The second is a noncoherent MLE algorithm derived on the basis of complex domain signal that is insensitive to carrier phase error and data bits, thereby eliminating the coupling effect between the carrier phase and Doppler frequency. Analytical test results demonstrate the performance of the proposed algorithms in comparison with those from conventional approaches in terms of pull-in-range, coupling effect, and computational efficiency.
机译:本文介绍了使用最大似然估计(MLE)技术的全球导航卫星系统(GNSS)接收机信号跟踪算法的替代形式。 MLE的代价函数用于估计信号参数,例如码延迟,载波相位和多普勒频率,用于推导鉴别器函数,以根据输入信号和参考信号创建误差信号。假设无代码信号和加性高斯白噪声,我们根据计算效率,通过对任意扩频码和调制方案使用非迭代MLE方法,得出通用信号跟踪算法的高效,实用形式。导出了MLE算法的两个版本。第一种是从信号参数的对数似然代价函数的梯度得出的相干MLE算法。第二种是基于对载波相位误差和数据位不敏感的复数域信号得出的非相干MLE算法,从而消除了载波相位与多普勒频率之间的耦合效应。分析测试结果证明了所提算法与常规方法相比在拉入范围,耦合效果和计算效率方面的性能。

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