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Efficient Carrier Acquisition and Tracking for High Dynamic and Weak Satellite Signals

机译:高动态和弱卫星信号的有效载波捕获和跟踪

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摘要

Under high dynamic and weak signal environment in the satellite Tracking, Telemetry and Command (TT&C) systems, the carrier acquisition and tracking can't be easily achieved. In this paper, an improved two-stage high dynamic and weak signal carrier acquisition and tracking are presented for perfect carrier synchronization. The typical U.S. Jet Propulsion Laboratory (JPL) high dynamic carrier model is adopted here to develop the proposed carrier acquisition and tracking performance. In the first stage, the fast Fourier transformation (FFT) based cyclic shifting accumulation periodogram carrier acquisition method is proposed to obtain the coarse carrier frequency offsets as well as the Doppler rate efficiently and quickly. In this procedure, the replacement of the time domain multiplication with the frequency domain cyclic shifting is proposed for low complexity. Also a variable rate sampling is adopted for better accuracy of FFT carrier spectrum calculation. In the second stage, a second-order Frequency Locked Loop (FLL) assisted by a third-order phase locked loop (PLL) is proposed to correct the residual carrier frequency and phase offsets and achieve a much fine carrier recovery. In these two stages, the structure of the proposed algorithm is also analyzed for optimal synchronization parameter selection. The simulation results show that the proposed carrier acquisition and tracking method performs efficiently under a high dynamic and low Signal-to-Noise Rate (SNR) environment for the satellite transmission applications. Therefore, the proposed carrier synchronization method is quite pragmatic and it can be effectively applied in the high dynamic and low SNR satellite communications with high efficiency and low complexity.
机译:在卫星跟踪,遥测和指挥(TT&C)系统中,在高动态和弱信号环境下,无法轻松实现载波的获取和跟踪。本文提出了一种改进的两阶段高动态和弱信号载波捕获和跟踪技术,以实现完美的载波同步。这里采用典型的美国喷气推进实验室(JPL)高动态航母模型来开发建议的航母采集和跟踪性能。在第一阶段,提出了一种基于快速傅立叶变换(FFT)的循环移位累积周期图载波捕获方法,以高效,快速地获得粗略的载波频率偏移以及多普勒速率。在该过程中,为降低复杂度,提出了用频域循环移位代替时域乘法。另外,采用可变速率采样以提高FFT载波频谱计算的准确性。在第二阶段,提出了由三阶锁相环(PLL)辅助的二阶锁频环(FLL),以校正残留载波频率和相位偏移并实现非常精细的载波恢复。在这两个阶段中,还分析了所提出算法的结构以优化同步参数选择。仿真结果表明,所提出的载波捕获和跟踪方法在高动态和低信噪比(SNR)环境下可以有效地执行卫星传输应用。因此,所提出的载波同步方法非常实用,可以有效地应用于高动态,低信噪比的卫星通信中,效率高,复杂度低。

著录项

  • 来源
    《Journal of Communications》 |2016年第7期|644-652|共9页
  • 作者

    Xiang Gao; Yong Li; Jianrong Bao;

  • 作者单位

    School of Electronic and Information, Northwestern Polytechnical University, Xi'an, 710072, P.R. China;

    School of Electronic and Information, Northwestern Polytechnical University, Xi'an, 710072, P.R. China;

    School of Communication Engineering, Hangzhou Dianzi University, Hangzhou, 310018, P.R. China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High dynamics; carrier recovery; carrier acquisition; carrier tracking; FFT; FLL; PLL;

    机译:高动态;载体恢复;承运人收购;运营商跟踪;FFT;FLL;锁相环;
  • 入库时间 2022-08-18 00:00:51

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