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Application Study of a Phase-Optimized Constant-Envelope Transmission (POCET) Optimization Algorithm for BDS B1 Signal

机译:BDS B1信号的相位优化恒包络传输(POCET)优化算法的应用研究

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Firstly we describe an improved POCET algorithm and design a multiplexing plan for B1 signals using it. At B1 frequency, binary complex subcarrier is chosen to implement the center frequency difference between regional and global navigation systems. Regional BPSK(2) OS signal and global TMBOC signal are combined and the best multiplex efficiency is -1.010 dB. Regional BPSK(2) AS signal and global BOC signal are combined and the best multiplex efficiency is -1.593 dB. And then, we analyze the signal in band-limited systems from three aspects: multiplex efficiency, constellation diagram and signal's peak to average power ration (PAPR). And then, we analyze the multiplex signal in band-limited system from three aspects: multiplex efficiency, constellation diagram and signal's peak to average power ration (PAPR). The ideal constant-envelope signal has become nonconstant-envelope of which constellation has changed and PAPR has increased. Also the multiplex efficiency has decreased, and it has decreased more after 30 MHz filter by almost 0.55 dB. The results of this paper provide the constant-envelope multiplex scheme at B1 frequency and the multiplex efficiency, and the analysis in band-limited system which is of significance in engineering practice.
机译:首先,我们描述了一种改进的POCET算法,并使用它设计了B1信号的复用方案。在B1频率下,选择二进制复数子载波以实现区域和全球导航系统之间的中心频率差。区域BPSK(2)OS信号和全局TMBOC信号相结合,最佳复用效率为-1.010 dB。组合区域BPSK(2)AS信号和全局BOC信号,最佳多路复用效率为-1.593 dB。然后,我们从三个方面分析带限系统中的信号:多路复用效率,星座图和信号的峰均功率比(PAPR)。然后,我们从三个方面对带宽受限系统中的复用信号进行了分析:复用效率,星座图和信号的峰均功率比(PAPR)。理想的恒定包络信号已变为星座改变且PAPR增加的非恒定包络。同样,多路复用效率也降低了,经过30 MHz滤波后,其复用效率下降了近0.55 dB。本文的结果提供了B1频率下的恒定包络复用方案和复用效率,并在带限系统中进行了分析,这在工程实践中具有重要意义。

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