基于GNSS接收机载波跟踪环路多径效应的MBOC、AltBOC和BOC调制性能分析

M. Fantino, G. Marucco, P. Mulassano, M. Pini
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引用次数: 28

摘要

该工作的目标是评估在多路径存在的情况下,伽利略空间信号(SIS)的新调制策略对全球导航卫星系统(GNSS)接收器(即锁频环路(FLL)/锁相环路(PLL))内载波跟踪操作的影响。尽管多路径对码跟踪的测量误差影响更大,但在依赖于载波相位测量的高精度应用中,如实时运动学(RTK)测量,其对载波跟踪的影响也不容忽视。特别注意的是多路二进制偏移载波(MBOC)信号和备选BOC (AltBOC)信号。在静态-低动态环境下,考虑了延时锁环(DLL)锁相环的相互作用,研究了一个双射线模型,目的是产生一个显示载波跟踪中的多径效应的误差图。基于NavSAS集团开发的GNSS全软件接收机,通过特定的软件工具进行闭环仿真。性能验证是针对噪声环境进行的。结果显示了环路在多径影响环境下的性能以及噪声对载波跟踪操作的影响。多径条件下的锁相环性能评估,考虑作为MBOC和AltBOC调制信号的输入,对于理解新调制的行为非常重要,特别是在基于载波跟踪的应用中,这些应用对最终定位性能要求更高(即大地测量应用)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of MBOC, AltBOC and BOC modulations in terms of multipath effects on the carrier tracking loop within GNSS receivers
The objective of the work is the evaluation of the impact of new modulation strategies foreseen for the galileo signal in space (SIS) on the carrier tracking operation within the global navigation satellite systems (GNSS) receiver (namely frequency locked loop (FLL)/phase locked loop (PLL)) in presence of multipath. Although multipath has more relevant effects in term of measurement errors on the code tracking, its consequences on the carrier tracking can not be neglected in high accuracy applications that rely on the carrier phase measurement such as, for example, real time kinematics (RTK) survey. Particular attention is addressed to the multiplexed binary offset carrier (MBOC) signals and the alternate BOC (AltBOC) signals. The investigation is conducted considering a two ray model with the aim of producing an error diagram showing the multipath effect in the carrier tracking: the delay locked loop (DLL) PLL interaction is considered in a static - low dynamic environment. Closed loop simulations are conducted by means of specific software tools based on the GNSS fully software receiver developed by the NavSAS group. Performance verification is done for a noisy environment. Results show loops performance in a multipath affected environment and the effects of noise in the carrier tracking operations. The PLL performance evaluation under multipath conditions, considering as input MBOC and AltBOC modulated signals, is important to understand the behavior of the new modulations especially in case of carrier tracking based applications that are the more demanding in terms of final positioning performance (i.e. geodetic applications).
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