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Acquisition Performance Comparison of New Generation of GNSS BOC-modulated Signals

机译:采集新一代GNSS Boc调制信号的性能比较

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The number of transmitted GNSS (Global Navigation Satellite Systems) signals has significantly increased with the introduction of new GPS signals (Block III) and the ongoing deployment of the European Galileo and the Chinese BeiDou BDS systems. To satisfy compatibility and interoperability requirements between global navigation satellite systems and also provide higher position accuracy and availability, the GNSS signal design evolves and one major contribution is the use of the modulation Binary Offset Carrier (BOC) on different forms [1]. From the signal processing point of view, a well-known advantage of this modulation, compared to Binary Phase Shift Keying (BPSK) modulation is the tracking performance improvement [2]. However, in a GNSS receiver, the first signal processing step is the acquisition. The output of the acquisition is a rough estimation of the incoming signal parameters (code delay and Doppler frequency) so it is a critical step and the following steps depend on its success. So it is legitimate to question the acquisition performance of the new BOCmodulated GNSS signals and compare them.
机译:随着新的GPS信号(块III)和欧洲伽利略的持续部署以及中国的北斗BDS系统的持续部署,传输的GNSS(全球导航卫星系统)信号的数量显着增加。为了满足全球导航卫星系统之间的兼容性和互操作性要求,也提供更高的位置准确性和可用性,GNSS信号设计演变而来的一个主要贡献是在不同形式上使用调制二元偏移载波(BOC)[1]。从信号处理的角度来看,与二进制相移键控(BPSK)调制相比,该调制的众所周知的优点是跟踪性能改进[2]。然而,在GNSS接收器中,第一信号处理步骤是采集。采集的输出是输入信号参数(代码延迟和多普勒频率)的粗略估计,因此这是一个关键步骤,以下步骤取决于其成功。因此,质疑新的Bocodulated GNSS信号的采集性能并进行比较。

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