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多普勒频率偏置线性调频信号的模糊函数分析 被引量:1

Analysis on Ambiguity Function of Doppler Frequency Shifted Linear Frequency Modulation Signals
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摘要 线性调频(linear frequency modulation,LFM)信号是研究最早、应用也最广泛的一种脉冲压缩信号,当LFM回波信号有较大的多普勒频移时,匹配滤波器仍能起到良好的脉冲压缩作用,这使得多普勒频率偏置技术得以应用。由于需要对发射信号进行多次周期扫频来获得目标的速度信息,根据模糊函数定义推导了多周期多普勒频率偏置线性调频(Doppler frequency shifted linear frequency modulation,DFS-LFM)信号的模糊函数,以及不同DFS-LFM信号的互模糊函数,并对DFS-LFM信号参数与雷达距离和多普勒分辨性能进行了分析。分析结果表明,多周期LFM信号进行多普勒频率偏置后,分辨性能不受影响;对于多个不同多普勒频率偏置的LFM信号,距离和速度分辨能力不受影响但其最大不模糊多普勒谱宽发生改变且与频率偏置间隔有关。当多普勒频率偏置间隔大于目标最大多普勒频移时,既不会影响目标的多普勒速度分辨性能,又能充分利用多普勒频谱,降低了系统对工作频率及带宽的要求。 Linear frequency modulation(LFM)signal is one of the earliest researched and most widely used pulse compression signals.The matched filter procedure still works well in pulse compression even when the echo of LFM signal has a large Doppler frequency shift,which ensures the Doppler frequency shift technology to be applied.Ambiguity function of Doppler frequency shifted linear frequency modulation(DFS-LFM)signal and its cross ambiguity function of different DFS-LFM signals are deduced based on its definition and then range resolution and Doppler resolution of coherent pulse train are analysed.Results show that resolutions of DFS-LFM keep the same as LFM signal and that for multiple DFS-LFM signals with different Doppler shifted frequencies resolution in range and Doppler frequency do not change but the maximum unambiguous Doppler frequency is confined by the interval of Doppler shifted frequencies.When the Doppler frequency shift is greater than the maximum Doppler frequency of radar target,both range resolution and Doppler resolution still performance well.Meanwhile the Doppler spectrum is efficiently used,which reduces the requirements on the system working frequency and bandwidth.
作者 梅慧 陈章友 MEI Hui;CHEN Zhang-you(School of Electronic and Information,Wuhan University,Wuhan 430072,China)
出处 《科学技术与工程》 北大核心 2018年第18期207-211,共5页 Science Technology and Engineering
关键词 线性调频信号 多普勒频率偏置 模糊函数 雷达分辨率 linear frequency modulation signal Doppler frequency shift ambiguity function radar resolution
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  • 1何子述,韩春林,刘波.MIMO雷达概念及其技术特点分析[J].电子学报,2005,33(B12):2441-2445. 被引量:97
  • 2RABIDEAU D J, PARKER P. Ubiquitous MIMO multifunction digital array radar[C]//Conference Record of the Thirty-Seventh Asilomar Conference on Signals, Systems and Computers. Pacific Grove: IEEE Signal Processing Society, 2003.
  • 3FISHLER E, HAIMOVICH A, BLUM R, et al. MIMO radar: an idea whose time has come[C]//Proc of the IEEE Int Conf on Radar. Philadelphia: IEEE Signal Processing Society, 2004: 71-78.
  • 4DENG H. Polyphase code design for orthogonal netted radar systems[J]. IEEE Trans on Signal Processing, 2004, 52(11): 3126-3135.
  • 5DENG H. Discrete frequency-coding waveform design for netted radar systems[J]. IEEE Signal Processing Letters, 2004, 11(2): 179-182.
  • 6LIU Bo, HE Zi-shu. Optimization of discrete frequency coding waveform for MIMO Radar[C]//IEEE Inte Conf Commun, Circuits and Systems (ICCCAS'07). Kokura: [s. n.], 2007, 2: 966-970.
  • 7LEVANON N, MOZESON E. Nullifying ACF grating lobes in stepped-frequency train of LFM pulses[J]. IEEE Transactions on Aerospace and Electronic System, 2003, 39(2): 694-703.
  • 8YANG Y, BLUM R S. MIMO radar waveform design based on mutual information and minimum mean-square error estimation[J]. IEEE Transactions on Aerospace and Electronic System, 2007, 43(1): 330-343.
  • 9林茂席,柯有安.雷达信号理论[M].北京:国防工业出版社.1981.
  • 10LEVANON N, MOZESON E. Radar signals[M]. New Jersey: John Wiley & Sons Inc, 2004.

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