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基于多尺度线性调频基信号稀疏分解的多分量LFM信号检测

罗洁思 于德介 彭富强

罗洁思, 于德介, 彭富强. 基于多尺度线性调频基信号稀疏分解的多分量LFM信号检测[J]. 电子与信息学报, 2009, 31(11): 2781-2785. doi: 10.3724/SP.J.1146.2008.01528
引用本文: 罗洁思, 于德介, 彭富强. 基于多尺度线性调频基信号稀疏分解的多分量LFM信号检测[J]. 电子与信息学报, 2009, 31(11): 2781-2785. doi: 10.3724/SP.J.1146.2008.01528
Luo Jie-si, Yu De-jie, Peng Fu-qiang. Multicomponent LFM Signals Detection Based on Multi-scale Chirplet Sparse Signal Decomposition[J]. Journal of Electronics & Information Technology, 2009, 31(11): 2781-2785. doi: 10.3724/SP.J.1146.2008.01528
Citation: Luo Jie-si, Yu De-jie, Peng Fu-qiang. Multicomponent LFM Signals Detection Based on Multi-scale Chirplet Sparse Signal Decomposition[J]. Journal of Electronics & Information Technology, 2009, 31(11): 2781-2785. doi: 10.3724/SP.J.1146.2008.01528

基于多尺度线性调频基信号稀疏分解的多分量LFM信号检测

doi: 10.3724/SP.J.1146.2008.01528 cstr: 32379.14.SP.J.1146.2008.01528
基金项目: 

国家自然科学基金(50875078)和高等学校博士学科点专项科研基金(20060532009)资助课题

Multicomponent LFM Signals Detection Based on Multi-scale Chirplet Sparse Signal Decomposition

  • 摘要: 该文针对传统的基于二次时频分析和原子追踪匹配方法处理多分量LFM信号时存在的时频干扰和等振幅交叉分解等问题,提出了一种基于多尺度线性调频基信号稀疏分解的多分量LFM信号检测方法,该方法采用多尺度的线调频基函数对多分量LFM信号进行投影分解,通过从不同的时间支撑区内投影系数最大的基函数中寻找出使分解信号能量最大的基元函数组合,逐次获得信号包含的能量最大的LFM信号分量,从基元函数连接形成的频率曲线即可获得LFM信号分量瞬时频率的估计,再对分量瞬时频率求起始时间点的频率值和曲线斜率便可得到该LFM分量的中心频率及调频斜率,仿真试验表明该文方法能精确地提取等振幅多分量LFM信号的瞬时频率,并具有很强的抗噪声干扰能力。
  • 张贤达, 保铮. 非平稳信号处理[M]. 北京: 国防工业出版社,2001: 20-25.[2]Barbarossa S. Analysis of multicomponet LFM signals by acombined Wigner-Hough transform[J].IEEE Transactions onSignal Processing.1995, 43(6):1511-1515[3]Wang Min-sheng, Chan A K, and Chui C K. Linear frequency-modulated signal detection using Radon-Ambiguitytransform[J].IEEE Transactions on Signal Processing.1998,46(3):571-585[4]李英祥, 肖先赐. 基于逐次滤波Radon-Ambiguity变换的多线性调频信号时频检测[J]. 声学学报, 2004, 6(29): 557-561.Li Ying-xiang and Xiao Xian-ci. Linear frequency-modulatedsignal detection and parameter estimation in lowsignal-to-noise ratio condition[J]. Acta Acustica, 2004, 6(29):557-561.[5]李家强, 金荣洪, 耿军平等. 基于高斯短时分数阶傅里叶变换的多分量LFM 信号检测与参数估计[J]. 电子与信息学报,2007, 3(29): 570-573.Li Jia-qiang, Jing Rong-hong, and Geng Jun-ping, et al..Detection and estimation of multi-component LFM signalsbased on gauss short-time fractional fourier transform[J].Journal of Electronics Information Technology, 2007, 3(29):570-573.[6]Du Wen-chao, Wang Guo-hong, and Gao Xue-qiang. Newmethod to extract radial acceleration of target from shortdurationsignal at low SNR[J]. Science in China Series E:Technological Sciences, 2008, 5(51): 556-575.[7]陶然, 周云松. 基于分数阶傅里叶变换的宽带LFM信号波达方向估计新算法[J]. 北京理工大学学报, 2005, 10(25):895-899.Tao Ran and Zhou Yun-song. A novel method for thedirection of arrival estimation of wide band linear frequencymodulated sources based on fractional fourier transform[J].Journal of Beijing Institute of Technology, 2005, 10(25):895-899.[8]司锡才, 池庆玺, 张春杰. 基于改进HAF 的线性调频雷达信号参数估计[J]. 系统工程与电子术, 2007, 12(29): 2042-2046.Si Xi-cai, Chi Qing-xi, and Zhang Chun-jie. Parameterestimation of linear frequency modulation radar signalbased on the improved high-order ambiguity function[J].Systems Engineering and Electronics, 2007, 12(29):2042-2046.[9]Mallat S and Zhang Z. Matching pursuit with time-frequencydictionaries[J].IEEE Transactions on Signal Processing.1993,41(12):3397-3415[10]王建英, 吕雪, 尹忠科. 基于MP 分解的宽带LFM 信号参数估计[J]. 电波科学学报, 2007, 6(22): 986-990.Wang Jian-ying, Lu Xue, and Yin Zhong-ke. Parameterestimation of wide band LFM signals based on MPdecomposition[J]. Chinese Journal of Radio Science, 2007,6(22): 986-990.[11]Yuan Wei-ming, Wang Min, and Wu Shun-jan. Algorithm forthe detection and paramter estimation of multicomponentLFM signals [J]. Journal of Electroniscs, 2005, 2(22):185-189.[12]Cands E J, et al.. Detecting highly oscillatory signals bychirplet path pursuit[J]. Applied and ComputationalHarmonic Analysis, 2008, 24(1): 14-40.[13]Chen S S, Donoho D L, and Saunders M A. Atomicdecomposition by basis pursuit[J].SIAM Rev.2001, 43(1):129-159[14]Qian S and Chen D. Joint time-frequency analysis [J]. IEEESignal Processing, 1999, 16(2): 52-67.
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出版历程
  • 收稿日期:  2008-11-24
  • 修回日期:  2009-05-04
  • 刊出日期:  2009-11-19

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