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Chapter 70 Research on the BDS Inter-Satellite-Type Carrier Phase Bias Introduced by Different NH Code Sign Conventions

机译:第70章由不同NH码符合约定引入的BDS卫星型载波相位偏差的研究

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As for D1 NAV message broadcast by BDS MEO/IGSO satellites, a secondary code of Neumann-Hoffman (NH) code with length of 20 bits is modulated on ranging code. However, the secondary coding are not implemented on D2 NAV message from BDS GEO satellites. While different GNSS receivers from different manufactures were used for carrier phase difference applications, a bias of 180° (half a cycle) may be induced between those carrier phases obtained from two different sign conventions A and B. The bias would result in that RTK activities failed. For the issue mentioned in former content, this paper presents an intensive research on the rationale of the BDS inter-satellite-type carrier phase bias introduced by different NH code sign conventions. We select three kinds of most popular GNSS OEM boards for testing and verification. A serial of crossover trails and long-term stability tests are executed to identify the half-cycle carrier phase bias between the BDS signals which two different OEM boards output. In addition, we change the sign convention of NH code in the OEM board K508 of ComNav Technology for further validation. Based on our test results, the paper proposes a recommended solution as all GNSS device manufactures should take Convention B for dealing with NH code between different BDS signals, to avoid the inter-satellite-type carrier phase bias in RTK application.
机译:作为用于通过BDS MEO / IGSO卫星,诺伊曼霍夫曼(NH)带有20个比特长度码的二次代码D1 NAV消息广播被调制在测距码。然而,二次编码不从BDS GEO卫星NAV D2消息实现。尽管制成品被用于载波相位差的应用,180°(半个周期)的偏置从不同不同GNSS接收器可以从两个不同的符号规则A和B获得的那些载波相位之间引起的偏差会导致在RTK活性失败的。对于前者的内容中提到的问题,本文提出了对不同NH代码符号规则引入了BDS-卫星类型间载波相位偏差的基本原理的深入研究。我们选择3种最流行的GNSS OEM板的测试和验证。交叉路径和长期稳定性测试的串行被执行以识别BDS信号,这两个不同的OEM板输出之间的半周期的载波相位偏差。此外,我们改变的NH代码为进一步验证ComNav技术的OEM板K508符号约定。根据我们的试验结果,因为所有的GNSS设备制造商应该采取公约乙用于处理不同BDS信号之间NH码,以避免在RTK应用卫星型间载波相位偏置提出了一种建议的解决方案。

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