An efficient two-stage B1C signal acquisition technique for engineering implementation of the modern beidou receiver

Shulin Yan, S. Zhou, Yuguo Zhang
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引用次数: 3

Abstract

The modern signals of the Chinese Beidou III navigation system bring new features compared to the previous civilian signals, such as longer spreading code, involving secondary code, new modulation technique (i.e. Binary Offset Carrier BOC), data/pilot channels and so on. These innovations are able to enhance the signal acquisition robustness, but they also require specific acquisition techniques to handle the large data stream, deal with the problem of sign transition and side peaks caused by the secondary code and the BOC modulation respectively. This paper proposes a novel two-stage acquisition technique for realizing efficient acquisition of the B1C signal in the engineering implementation of the modern receiver. The first stage employs an extended parallelized Averaging Correlation (AC) search structure, which can cope with the sign transition problem, to coarsely capture the signal with high efficiency. At the second stage, a fine-search process is completed within a reduced searching range to provide high precision result. The involving of the later stage aims to avoid the side peaks effect in the tracking stage that can easily cause a false lock. In addition, both of the single and channel combining acquisition techniques are introduced, which give designers an option of implementing the acquisition with higher sensitivity but more resources. The experiment results demonstrate that the proposed method allows to use much cheaper FFT blocks and enables fast acquisition by parallel process. The proposed method can reduce the number of multiplications by at least 61% when the sampling frequency is over 50MHz while providing quite similar acquisition precisions with the conventional method.
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一种有效的两级B1C信号采集技术,用于现代北斗接收机的工程实现
中国北斗三号导航系统的现代信号与以前的民用信号相比,具有扩频码更长、涉及二次码、新的调制技术(即二进制偏移载波BOC)、数据/导频信道等新特点。这些创新能够增强信号采集的鲁棒性,但它们也需要特定的采集技术来处理大数据流,分别处理由二次码和BOC调制引起的符号转换和侧峰问题。为了在现代接收机的工程实现中实现对B1C信号的高效采集,本文提出了一种新的两级采集技术。第一阶段采用扩展的并行化平均相关(AC)搜索结构,该结构能够有效地处理符号转移问题,从而实现信号的高效粗捕获。在第二阶段,在缩小的搜索范围内完成精细搜索过程,以提供高精度的结果。后期的介入是为了避免跟踪阶段容易产生的侧峰效应导致误锁。此外,还介绍了单通道和通道组合采集技术,这为设计人员提供了实现具有更高灵敏度但更多资源的采集的选择。实验结果表明,该方法可以使用更便宜的FFT块,并且可以通过并行处理实现快速采集。当采样频率大于50MHz时,该方法可减少至少61%的乘法次数,同时具有与传统方法相当的采集精度。
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