论文标题

使用基于信号延迟和乘法的可变长度数据累积的Beidou信号采集方法

A BeiDou Signal Acquisition Approach Using Variable Length Data Accumulation based on Signal Delay and Multiplication

论文作者

Yang, Menghuan, Wu, Hong, Wang, Qiqi, Zhao, Yingxin, Liu, Zhiyang

论文摘要

使用Neumannhoffman代码的次要调制增加了位符号转变的可能性。与其他GNSS信号不同,Beidou B1/B3信号中没有试点组件,这增加了采集的复杂性。先前的研究表明,延迟和乘法(DAM)方法能够消除位符号过渡问题,但仅适用于相当强的信号。在本文中,提出了一种基于大坝的Beidou信号采集方法,称为可变长度数据累积(VLDA),以获取弱卫星信号。首先,分析了大坝方法与不同延迟的性能。大坝操作不仅消除了位符号过渡,而且还增加了噪声功率。其次,在定期积累了长期信号以提高信号强度以获取弱信号。在考虑范围代码的多普勒频移时,必须在积累长期信号之前补偿信号长度。最后,基于快速转变的并行代码阶段算法用于获取。仿真结果表明,在相同的计算量下,所提出的VLDA方法比传统的非辅助集成方法具有更好的采集灵敏度。 VLDA方法仅需要大约27.5%的计算即可达到相同的采集灵敏度(35 dBHz)。而且,实际的实验结果验证了VLDA方法的可行性。可以得出结论,提出的方法是解决位符号过渡问题的有效且可行的方法。

The secondary modulation with the NeumannHoffman code increases the possibility of bit sign transition. Unlike other GNSS signals, there is no pilot component for synchronization in BeiDou B1/B3 signals, which increases the complexity in acquisition. A previous study has shown that the delay and multiplication (DAM) method is able to eliminate the bit sign transition problem, but it only applies to pretty strong signals. In this paper, a DAM-based BeiDou signal acquisition approach, called variable length data accumulation (VLDA), is proposed to acquire weak satellite signals. Firstly, the performance of DAM method versus the different delays is analyzed. The DAM operation not only eliminates bit sign transition, but it also increases noise power. Secondly, long-term signal is periodically accumulated to improve signal intensity in order to acquire weak signals. While considering the Doppler frequency shift of ranging codes, the signal length must be compensated before accumulating long-term signal. Finally, the fast-Fourier-transform based parallel code phase algorithm are used for acquisition. The simulation results indicate that the proposed VLDA method has better acquisition sensitivity than traditional non-coherent integration method under the same calculation amount. The VLDA method only requires approximately 27.5% of calculations to achieve the same acquisition sensitivity (35 dBHz). What is more, the actual experimental results verify the feasibility of the VLDA method. It can be concluded that the proposed approach is an effective and feasible method for solving the bit sign transition problem.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源