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Study on Code Multipath Mitigation Technology for BDS-3 B2a Signal

机译:BDS-3 B2a信号的代码多径抑制技术研究

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The construction and development of BDS is divided into three phases: BDS-1, BDS-2, and BDS-3 in sequence. In December 2017, China Satellite Navigation Office published the open service signal B2a transmitted from the BDS space segment to the BDS user segment. The B2a signal is transmitted by the Medium Earth Orbit (MEO) satellites and the Inclined Geosynchronous Satellite Orbit (IGSO) satellites of BDS-3, and provides open services. When the signal is transmitted to the ground, it can be reflected or scattered into the receiver through the ground object. This phenomenon is called multipath. The multipath signal will be attached to the direct signal, and that causes the autocorrelation function to be distorted which causes the error of measuring at the end. This paper introduces the characteristics of B2a signal briefly at first, and then analyzes the Narrow Correlator Spacing Technique, the Early/Late Slope Technique (ELS), the Double-Delta Correlator Technique, and the Code Correlation Reference Waveform Technique (CCRW) for B2a signal. The simulation results show that the W4 waveform of CCRW is the best for the multipath mitigation for B2a signal, and the multipath error envelope is reduced by 67.31% compared with the Narrow Correlator Technique with the infinite bandwidth.
机译:BDS的构建和开发按顺序分为三个阶段:BDS-1,BDS-2和BDS-3。 2017年12月,中国卫星导航办公室发布了从BDS空间段传输到BDS用户段的开放服务信号B2a。 B2a信号由BDS-3的中地球轨道(MEO)卫星和倾斜地球同步卫星轨道(IGSO)卫星发送,并提供开放服务。当信号传输到地面时,它可以通过地面物体反射或散射到接收器中。这种现象称为多路径。多径信号将被附加到直接信号上,这将导致自相关函数失真,最终导致测量误差。本文首先简要介绍了B2a信号的特性,然后分析了B2a的窄相关器间隔技术,早期/晚期斜率技术(ELS),双增量相关器技术以及代码相关参考波形技术(CCRW)。信号。仿真结果表明,CCRW的W4波形最适合B2a信号的多径缓和,与无限带宽的窄相关器技术相比,多径误差包络减少了67.31%。

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