热带环境下高动态信号采集的性能考虑

Syed Mohd Fairuz, S. Dardin, Z. A. Rashid, A. Hasim, A. A. Azid, A. M. Ishak
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引用次数: 0

摘要

GNSS接收机的信号采集阶段被认为是信号经过前端下变频后基带处理的第一步。所述信号分量由扩频码、下变频到中频的剩余载波频率和导航数据组成。采集阶段的目标是粗略估计由于传播延迟和受多普勒影响较大的载波频率而产生的码延迟。许多高动态环境关注于城市地区,但这项工作转移了对高度热带环境的兴趣。像无人机这样的高动态应用,在恶劣的环境下,特别是在热带重环境的冠层下使用时,信号的获取将面临巨大的问题。生成内部合成原始信号,并使用MATLAB®实现使用不同采集策略的接收器处理。本文在恶劣的热带环境假设下,对模拟GPS L1信号的串行和并行采集技术进行了性能评估,并进一步提出了处理这种条件时的性能考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Consideration in Signal Acquisition for High Dynamic Application in Tropical Environment
The signal acquisition stage in GNSS receiver is considered the first step in the baseband processing after the signal has been down-converted by the front end. The signal components consist of a spreading code, residual carrier frequency that has been down-converted to an intermediate frequency and a navigation data. Acquisition phase aim is to coarsely estimate the code delay that shifted due to propagation delay and the carrier frequency that has been heavily influenced by Doppler. Many high-dynamic environment focus on the urban area but this work shifted the interest in highly tropical environment. The high dynamic application such as UAV will face an enormous problem in trying to acquire the signal especially when it is used in a harsh environment such as under the canopy of heavy tropical environment. An in-house synthetic raw signal is generated and the receiver processing using different acquisition strategy is being implemented using MATLAB®. This paper evaluate the performance of serial and parallel acquisition techniques for simulated GPS L1 signal under the assumption of harsh tropical environment and further proposed the performance consideration when dealing with such condition.
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