为了解决传统的PMF-FFT(Partial Match Filter-Fast Fourier Transform)捕获算法在信号捕获方面的不足,提出了一种新的基于PMF-FFT的时频域双并行捕获方案。对PMF加改进的汉宁窗,通过调整窗系数,选择最优化的参数,减小了捕获系统输出增...为了解决传统的PMF-FFT(Partial Match Filter-Fast Fourier Transform)捕获算法在信号捕获方面的不足,提出了一种新的基于PMF-FFT的时频域双并行捕获方案。对PMF加改进的汉宁窗,通过调整窗系数,选择最优化的参数,减小了捕获系统输出增益的衰减。利用FFT频谱分析的特点,对FFT的输入进行合理补零,输出加改进的汉宁窗,调整窗系数,基本上消除了扇贝损失。理论分析和MATLAB仿真结果证明,该方案在尽量不增加系统复杂度的情况下提高了捕获速度和频率估计精度,能够适应多普勒频偏较大的扩频伪码快速捕获。展开更多
According to the requirements of the high-sensitivity acquisition of Direct Sequence Spread Spectrum(DSSS) signals under ultrahigh dynamic environments in space communications, a three-dimensional joint search of the ...According to the requirements of the high-sensitivity acquisition of Direct Sequence Spread Spectrum(DSSS) signals under ultrahigh dynamic environments in space communications, a three-dimensional joint search of the phase of Pseudo-Noise-code(PN-code),Doppler frequency and its rate-of-change is presented to achieve high sensitivity in sensing high-frequency dynamics. By eliminating the correlation peak loss caused by ultrahigh Doppler frequency and its rate-of-change offset,the proposed method improves the acquisition sensitivity by increasing the non-coherent accumulation time. The validity of the algorithm is proved by theoretical analysis and simulation results. It is shown that signals with a carrier- to-noise ratio as low as 39 dBHz can be captured with high performance when the Doppler frequency is up to ±1 MHz and its rate-of-change is up to ±200 kHz/s.展开更多
文摘为了解决传统的PMF-FFT(Partial Match Filter-Fast Fourier Transform)捕获算法在信号捕获方面的不足,提出了一种新的基于PMF-FFT的时频域双并行捕获方案。对PMF加改进的汉宁窗,通过调整窗系数,选择最优化的参数,减小了捕获系统输出增益的衰减。利用FFT频谱分析的特点,对FFT的输入进行合理补零,输出加改进的汉宁窗,调整窗系数,基本上消除了扇贝损失。理论分析和MATLAB仿真结果证明,该方案在尽量不增加系统复杂度的情况下提高了捕获速度和频率估计精度,能够适应多普勒频偏较大的扩频伪码快速捕获。
基金supported by the Youth Science Fund,National Natural Science Foundation of China under Grant No.61102130
文摘According to the requirements of the high-sensitivity acquisition of Direct Sequence Spread Spectrum(DSSS) signals under ultrahigh dynamic environments in space communications, a three-dimensional joint search of the phase of Pseudo-Noise-code(PN-code),Doppler frequency and its rate-of-change is presented to achieve high sensitivity in sensing high-frequency dynamics. By eliminating the correlation peak loss caused by ultrahigh Doppler frequency and its rate-of-change offset,the proposed method improves the acquisition sensitivity by increasing the non-coherent accumulation time. The validity of the algorithm is proved by theoretical analysis and simulation results. It is shown that signals with a carrier- to-noise ratio as low as 39 dBHz can be captured with high performance when the Doppler frequency is up to ±1 MHz and its rate-of-change is up to ±200 kHz/s.