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A Frequency-Domain Multipath Parameter Estimation and Mitigation Method for BOC-Modulated GNSS Signals

机译:Boc调制GNSS信号的频域多径参数估计和缓解方法

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摘要

As multipath is one of the dominating error sources for high accuracy Global Navigation Satellite System (GNSS) applications, multipath mitigation approaches are employed to minimize this hazardous error in receivers. Binary offset carrier modulation (BOC), as a modernized signal structure, is adopted to achieve significant enhancement. However, because of its multi-peak autocorrelation function, conventional multipath mitigation techniques for binary phase shift keying (BPSK) signal would not be optimal. Currently, non-parametric and parametric approaches have been studied specifically aiming at multipath mitigation for BOC signals. Non-parametric techniques, such as Code Correlation Reference Waveforms (CCRW), usually have good feasibility with simple structures, but suffer from low universal applicability for different BOC signals. Parametric approaches can thoroughly eliminate multipath error by estimating multipath parameters. The problems with this category are at the high computation complexity and vulnerability to the noise. To tackle the problem, we present a practical parametric multipath estimation method in the frequency domain for BOC signals. The received signal is transferred to the frequency domain to separate out the multipath channel transfer function for multipath parameter estimation. During this process, we take the operations of segmentation and averaging to reduce both noise effect and computational load. The performance of the proposed method is evaluated and compared with the previous work in three scenarios. Results indicate that the proposed averaging-Fast Fourier Transform (averaging-FFT) method achieves good robustness in severe multipath environments with lower computational load for both low-order and high-order BOC signals.
机译:由于多径是高精度全球导航卫星系统(GNSS)应用的主导误差源之一,采用多径缓解方法来最小化接收器中的这种危险误差。采用二元偏移载波调制(BOC)作为现代化信号结构来实现显着的增强。然而,由于其多峰值自相关函数,用于二进制相移键控(BPSK)信号的传统多径缓解技术不是最佳的。目前,已经研究了非参数和参数方法,专门针对BOC信号的多径缓解。非参数化技术,例如代码相关参考波形(CCRW),通常具有与简单结构的良好可行性,而是对不同的BOC信号具有低通用适用性。参数方法可以通过估计多径参数来彻底消除多径误差。此类别的问题是高计算复杂性和漏洞的漏洞。为了解决问题,我们在BOC信号的频域中呈现了一种实用的参数多径估计方法。接收信号被传送到频域以分离用于多径参数估计的多径信道传递函数。在此过程中,我们采取分割和平均的操作,以减少噪声效果和计算负载。评估所提出的方法的性能,并将其与前一个方案的工作进行了比较。结果表明,所提出的平均 - 快速傅里叶变换(平均-FFT)方法在具有较低计算负载的严重多径环境中实现了良好的鲁棒性,用于低阶和高阶BOC信号。

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