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伽利略卫星导航系统E1信号的捕获算法分析
引用本文:袁建国,刘飞龙,袁艳涛.伽利略卫星导航系统E1信号的捕获算法分析[J].半导体光电,2014,35(4):668-672.
作者姓名:袁建国  刘飞龙  袁艳涛
作者单位:重庆邮电大学 光纤通信技术重点实验室, 重庆 400065;重庆邮电大学 光纤通信技术重点实验室, 重庆 400065;重庆邮电大学 光纤通信技术重点实验室, 重庆 400065
基金项目:国家自然科学基金项目(610711117,61275077,61003256).
摘    要:对伽利略卫星系统中E1信号的四种捕获算法:自相关旁瓣消除方法(ASPecT)、filtered相关法、类二进制相移键控法(BPSK-Like)和偏移正交BOC互相关法(OQCC)进行了详细理论分析。采集了真实的伽利略卫星E1信号进行捕获算法的仿真分析,并从基本捕获结果、计算复杂度、相关主峰均值比和检测性能等方面进行了对比分析。仿真结果表明OQCC相关法和其他算法相比,性能更优异,能更有效地提高主峰值与去除副峰。所以OQCC相关法更适合推广,具有更高的实用价值。

关 键 词:导航系统  捕获算法  E信号  偏移正交BOC互相关算法
收稿时间:2013/12/30

Analysis on the Acquisition Algorithm of E1 Signal for Galileo Satellite Navigation Systems
Abstract:The theoretical analysis on the four acquisition algorithms of E1 signal for Galileo satellite navigation systems was performed, including Autocorrelation Side Peak Cancellation Technique (ASPeCT) algorithm, filtered correlation algorithm, BPSK Like algorithm and Offset Quadratic Cross Correlation(OQCC) algorithm. The simulation analysis of the acquisition algorithms was performed by collecting the real Galileo satellite E1 signal. Furthermore, the comparison analysis on the performance of the basic acquisition result, computation complexity, the mean value of the correlation peak and the detection performance was also carried out. The simulation analysis shows that OQCC algorithm, compared with other algorithms, realizes more excellent performance and can improve the main peak value and remove the secondary peak more effectively. As a result, the OQCC algorithm is much more suitable for applications and has a higher practical application value.
Keywords:navigation system    acquisition algorithm    E1 signal    OQCC algorithm
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