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    覃新贤, 谢应科, 韩承德. GPS微弱信号C/A码捕获的最佳路径搜索算法[J]. 计算机研究与发展, 2008, 45(8): 1423-1429.
    引用本文: 覃新贤, 谢应科, 韩承德. GPS微弱信号C/A码捕获的最佳路径搜索算法[J]. 计算机研究与发展, 2008, 45(8): 1423-1429.
    Qin Xinxian, Xie Yingke, Han Chengde. An Acquisition Algorithm of C/A Code in GPS Receiver Under Weak Signal Environment Based on Optimum Path[J]. Journal of Computer Research and Development, 2008, 45(8): 1423-1429.
    Citation: Qin Xinxian, Xie Yingke, Han Chengde. An Acquisition Algorithm of C/A Code in GPS Receiver Under Weak Signal Environment Based on Optimum Path[J]. Journal of Computer Research and Development, 2008, 45(8): 1423-1429.

    GPS微弱信号C/A码捕获的最佳路径搜索算法

    An Acquisition Algorithm of C/A Code in GPS Receiver Under Weak Signal Environment Based on Optimum Path

    • 摘要: C/A码的捕获是接收GPS信号最重要的环节.在弱信号的环境下,为了可靠地捕获C/A码、提高接收机的灵敏度,应尽量延长相干累积的时间.但是,由于导航数据比特的跳变,相干累积的时间受到限制.如何减少导航数据跳变沿的影响,延长相干累积的时间,是所有捕获算法的关键问题.在对目前常用的C/A码捕获算法进行研究的基础上,提出了搜索路径的概念,同时以导航数据跳变沿检测为前提,提出了基于最佳路径搜索的捕获算法.该算法采用相干累积的方法,不会引起平方损失.仿真结果表明,累积时间长度80ms,在SNR=-40dB的情况下,最佳路径算法仍具有高达92%的捕获成功率,能显著提高接收机的灵敏度.

       

      Abstract: Acquisition of C/A code is most important for GPS receiver in weak signal environment. Processing coherently with long integration time is an efficient way to improve the sensitivity of GPS receiver. However, because of the transition of the navigation data bits, the integration time has to be limited. How to detect the transition of navigation data bits is the key issue to prolong the coherent integration time in weak signal environment. In this paper, some conventional acquisition technologies are studied carefully and the idea of optimum path is introduced. Optimum path algorithm is employed to minimize the cost function which determines the transition of navigation data bits. Furthermore, the whole acquisition algorithm based on the optimum path is given. This novel algorithm process the received data coherently with longer integration time and without any squared loss. Compared with other algorithm, the new method can reduce computing burden dramatically. The acquisition rate expression is also deduced. Simulations show that the new algorithm can effectively improve the acquisition rate. When integration time equals 80ms, SNR equals -40dB, the new optimum path algorithm still has as high as 92% acquisition rate which remarkably improves the sensitivity of GPS receiver.

       

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