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Linear-Combined-Code-Based Unambiguous Code Discriminator Design for Multipath Mitigation in GNSS Receivers

机译:基于线性组合码的GNSS接收器中多径缓解的明确码鉴别器设计

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摘要

Unambiguous tracking and multipath mitigation for Binary Offset Carrier (BOC) signals are two important requirements of modern Global Navigation Satellite Systems (GNSS) receivers. A GNSS discriminator design method based on optimization technique is proposed in this paper to meet these requirements. Firstly, the discriminator structure based on a linear-combined code is given. Then the requirements of ideal discriminator function are converted into the mathematical constraints and the objective function to form a non-linear optimization problem. Finally, the problem is solved and the local code is generated according to the results. The theoretical analysis and simulation results indicate that the proposed method can completely remove the false lock points for BOC signals and provide superior multipath mitigation performance compared with traditional discriminator and high revolution correlator (HRC) technique. Moreover, the proposed discriminator is easy to implement for not increasing the number of correlators.
机译:二进制偏移载波(BOC)信号的明确跟踪和多径缓解是现代全球导航卫星系统(GNSS)接收机的两个重要要求。为满足这些要求,本文提出了一种基于优化技术的GNSS鉴别器设计方法。首先,给出了基于线性组合码的鉴别器结构。然后将理想判别函数的要求转换为数学约束和目标函数,从而形成非线性优化问题。最后,解决了问题,并根据结果生成了本地代码。理论分析和仿真结果表明,与传统的鉴别器和高旋转相关器(HRC)技术相比,该方法可以完全消除BOC信号的虚假锁定点,并具有出色的多径缓解性能。此外,所提出的鉴别器易于实现而不增加相关器的数量。

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