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伪码调相连续波雷达的脉压主旁瓣比数学分析
引用本文:陈金立,顾红,苏卫民. 伪码调相连续波雷达的脉压主旁瓣比数学分析[J]. 兵工学报, 2008, 29(10): 1203-1209
作者姓名:陈金立  顾红  苏卫民
作者单位:南京理工大学,电子工程技术研究中心,江苏,南京,210094;南京理工大学,电子工程技术研究中心,江苏,南京,210094;南京理工大学,电子工程技术研究中心,江苏,南京,210094
摘    要:研究了伪码(m序列)调相连续波雷达的脉压主旁瓣比随目标多普勒频率变化的关系,并推导了其数学表达式。由于m序列调相连续波雷达在非目标距离门上的脉冲压缩是一种“宽带输入窄带输出的过程”,那么脉压旁瓣实部和虚部分别近似服从正态分布,由此可计算出脉压后峰值旁瓣实部和虚部的值,然后给出了脉压输出主旁瓣比的数学表达式。仿真结果表明:当m序列的周期长度p≥31时,由脉压主旁瓣比数学表达式计算得到的数据与仿真得到的数据能很好地吻合。

关 键 词:雷达工程  伪码调相  m序列  脉冲压缩  主旁瓣比

Mathematical Analysis of Main-to-Sidelobe Ratio After the Pulse Compression in Pseudorandom Code Phase Modulation Continuous Wave Radar
CHEN Jin-li,GU Hong,SU Wei-min. Mathematical Analysis of Main-to-Sidelobe Ratio After the Pulse Compression in Pseudorandom Code Phase Modulation Continuous Wave Radar[J]. Acta Armamentarii, 2008, 29(10): 1203-1209
Authors:CHEN Jin-li  GU Hong  SU Wei-min
Affiliation:Research Center of Electronic Engineering Technology, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China
Abstract:The relation between main-to-sidelobe ratio and Uoppler frequency after the pulse compres?sion in pseudorandom code (m-sequence) phase modulation continuous wave (CW) radar was studied, and the mathematical expression of main-to-sidelobe ratio after the pulse compression was deduced、 Since the pulse compression with the non-target range gate in m-sequence phase modulation CW radar is a “wide-band input, narrow-band outout process”,the sidelobe’s real part and imaginary part after the pulse compression approximately obey normal distribution, respectively. Thus, the peak sidelobe’s real part and imaginary part after the pulse compression were calculated. Then the mathematical ex?pression of the main-to-siaelobe ratio after the pulse compression was deduced. simulation result indi?cates that the data calculated by the mathematical expression of the main-to-sidelobe ratio is close to the data attained by the simulation at the period length of m-sequence of p ≥31.
Keywords:radar engineering    pseudorandom code phase modulation    m-sequence    pulse compres?sion    main-to-sidelobe ratio  
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