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一种适用于大频偏北斗微弱信号的改进型差分相干比特同步算法

A Modified Differential Coherent Bit Synchronization Algorithm for BeiDou Weak Signals with Large Frequency Deviation.

作者信息

Han Zhifeng, Liu Jianye, Li Rongbing, Zeng Qinghua, Wang Yi

机构信息

College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211100, China.

出版信息

Sensors (Basel). 2017 Jul 4;17(7):1568. doi: 10.3390/s17071568.

Abstract

BeiDou system navigation messages are modulated with a secondary NH (Neumann-Hoffman) code of 1 kbps, where frequent bit transitions limit the coherent integration time to 1 millisecond. Therefore, a bit synchronization algorithm is necessary to obtain bit edges and NH code phases. In order to realize bit synchronization for BeiDou weak signals with large frequency deviation, a bit synchronization algorithm based on differential coherent and maximum likelihood is proposed. Firstly, a differential coherent approach is used to remove the effect of frequency deviation, and the differential delay time is set to be a multiple of bit cycle to remove the influence of NH code. Secondly, the maximum likelihood function detection is used to improve the detection probability of weak signals. Finally, Monte Carlo simulations are conducted to analyze the detection performance of the proposed algorithm compared with a traditional algorithm under the CN0s of 20~40 dB-Hz and different frequency deviations. The results show that the proposed algorithm outperforms the traditional method with a frequency deviation of 50 Hz. This algorithm can remove the effect of BeiDou NH code effectively and weaken the influence of frequency deviation. To confirm the feasibility of the proposed algorithm, real data tests are conducted. The proposed algorithm is suitable for BeiDou weak signal bit synchronization with large frequency deviation.

摘要

北斗系统导航消息采用1 kbps的二次NH(诺伊曼 - 霍夫曼)码进行调制,其中频繁的比特跳变将相干积分时间限制为1毫秒。因此,需要一种比特同步算法来获取比特边缘和NH码相位。为了实现对具有大频率偏差的北斗微弱信号的比特同步,提出了一种基于差分相干和最大似然的比特同步算法。首先,采用差分相干方法消除频率偏差的影响,并将差分延迟时间设置为比特周期的倍数以消除NH码的影响。其次,使用最大似然函数检测来提高微弱信号的检测概率。最后,进行蒙特卡罗仿真,分析在20~40 dB-Hz的载噪比(CN0)和不同频率偏差下,所提算法与传统算法相比的检测性能。结果表明,在频率偏差为50 Hz时,所提算法优于传统方法。该算法能够有效消除北斗NH码的影响,减弱频率偏差带来的影响。为了验证所提算法的可行性,进行了实际数据测试。所提算法适用于具有大频率偏差的北斗微弱信号比特同步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b09/5539494/b8675ee94b04/sensors-17-01568-g001.jpg

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