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Study of an Application of Hybrid Spread Spectrum Technology in Satellite Communication

机译:混合扩频技术在卫星通信中的应用研究

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This study is aiming at the application of DS (Direct Sequence)/FFH (Fast Frequency Hopping) hybrid spread spectrum technology in satellite communications. A system model was established and key technologies were analyzed. The DS/FFH synchronization of hybrid spread-spectrum satellite communication system includes two stages, such as acquisition and tracking. In the acquisition stage, the acquisition is based on the parallel waiting through PMF-FFT structure, which can achieve rapid acquisition; in the tracking stage, through the carrier phase lock loop and the pseudo code tracking loop, the accurate alignment of the carrier phase of the received signal and the phase of the direct spread pseudo code is realized respectively. Due to the group delay distortion the carrier phase is no longer continuous, which affects the reception synchronization. This paper proposes group delay equalization for the channel through the analysis of four type of group delay and corresponding cause in the signal transmission process. Finally, comparisons analysis of the anti-interference performance of the system under the conditions of broadband, narrowband, multi-frequency and partial frequency band interference is performed through simulation. The results can provide certain guiding significance for the system anti-interference design and engineering implementation.
机译:这项研究的目的是在卫星通信中应用DS(直接序列)/ FFH(快速跳频)混合扩频技术。建立了系统模型,并对关键技术进行了分析。混合扩频卫星通信系统的DS / FFH同步包括捕获和跟踪两个阶段。在采集阶段,采集是基于通过PMF-FFT结构的并行等待,可以实现快速采集;在跟踪阶段,通过载波锁相环和伪码跟踪环,分别实现了接收信号的载波相位和直接扩展伪码的相位的精确对准。由于群时延失真,载波相位不再连续,这会影响接收同步。通过分析四种类型的群时延及其在信号传输过程中的相应原因,提出了信道的群时延均衡。最后,通过仿真对系统在宽带,窄带,多频和部分频段干扰条件下的抗干扰性能进行了比较分析。结果对系统的抗干扰设计和工程实施具有一定的指导意义。

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