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具有稳健频率间辅助功能的双频全球导航卫星系统接收机的高效现场可编程门阵列实现

Efficient FPGA Implementation of a Dual-Frequency GNSS Receiver with Robust Inter-Frequency Aiding.

作者信息

Huang Kuan-Ying, Juang Jyh-Ching, Tsai Yung-Fu, Lin Chen-Tsung

机构信息

Department of Electrical Engineering, National Cheng Kung University (NCKU), Tainan 70101, Taiwan.

National Applied Research Laboratories (NARLabs)-National Space Organization (NSPO), Hsinchu 30078, Taiwan.

出版信息

Sensors (Basel). 2021 Jul 6;21(14):4634. doi: 10.3390/s21144634.

Abstract

Multiple frequency global navigation satellite system (GNSS) has become more complex due to the existence of extra channels. Typically, auxiliary methods are used to synchronize the second signals at other bands by aiding the acquired channel parameters. However, there are critical limitations because the reception of GNSS signals is subject to uncertainties due to noise carrier injection or circuit interference. The relationship between the two Doppler frequencies can be affected by uncertainties. Therefore, we aimed to implement an efficient dual-frequency field-programmable gate array (FPGA), performing a direct aid tracking method for the secondary channel to achieve resource efficiency and inner aid robustness. A robust estimator that directly links two loops in the two bands is proposed. In this scheme, (1) a robust estimator able to cope with uncertainty; (2) a primary tracking scheme to obtain the error boundary, and (3) a tracked bit-boundary for the initial code phase of the second channel are used. Based on experiments on the FPGA, the robust channel link can achieve direct aid tracking, and 31.02% of the original hardware resources from the aided acquisition module were released satisfactorily.

摘要

由于存在额外的通道,多频全球导航卫星系统(GNSS)变得更加复杂。通常,采用辅助方法通过辅助已获取的通道参数来同步其他频段的第二信号。然而,存在关键限制,因为GNSS信号的接收会因噪声载波注入或电路干扰而受到不确定性的影响。两个多普勒频率之间的关系可能会受到不确定性的影响。因此,我们旨在实现一种高效的双频现场可编程门阵列(FPGA),对辅助通道执行直接辅助跟踪方法,以实现资源效率和内部辅助鲁棒性。提出了一种直接连接两个频段中两个环路的鲁棒估计器。在该方案中,使用了(1)能够应对不确定性的鲁棒估计器;(2)用于获得误差边界的主跟踪方案,以及(3)用于第二通道初始码相位的跟踪比特边界。基于在FPGA上的实验,鲁棒通道链路可以实现直接辅助跟踪,并且令人满意地释放了辅助捕获模块中31.02%的原始硬件资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17b3/8309637/c0988dcab577/sensors-21-04634-g001a.jpg

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