南京大学学报(自然科学版) ›› 2012, Vol. 48 ›› Issue (5): 623–631.

• • 上一篇    下一篇

基于宽带模糊函数的线性调频信号速度分辨力分析

 郭瑞,蔡志明,姜可宇

  

  • 出版日期:2015-07-02 发布日期:2015-07-02
  • 作者简介: (海军工程大学电子工程学院,武汉,430033)
  • 基金资助:
     National Natural Science Foundation of China (50909096.51009146)

 Resolution ability analysis of linear frequency modulated signal
based on wideband ambiguity function*

 Guo Rui**,Cai Zhi-Ming,Jiann Ke-Yu   

  • Online:2015-07-02 Published:2015-07-02
  • About author: (Electrical Engineering College, Navy Engineering University, Wuhan, 430033,China)

摘要:  速度分辨力是线性调频信号(LFM)的关键特性之一,其和LFM参数的现有定量关系是在窄带近似条件下基于窄带模糊函数的分析结果.在宽带声纳或者超宽带需达应用中,窄带近似条件往往难以满足,现有速度分辨力和LFM参数的定量关系不再成立,而应在宽带条件下重新分析.木文在宽带条件下利用宽带模糊函数工具,建
立了关于LFM参数的速度分辨力隐函数方程.由于该隐函数方程不能直接反映速度分辨力和LFM参数的定量关系,文中采用了一种数值分析方法.该方法将速度分辨力表示成各单参数函数的连乘形式,综合运用方程求根和曲线拟合方法,求出单参数函数关系,进而综合出速度分辨力的表达式.木文应用该方法分析给出了宽带条件下的速度分辨力和LFM参数的定量关系式.结果表明速度分辨力不仅和LFM的脉冲宽度以及中心频率参数有关,还与LFM的相对带宽参数有关.验证实验表明,与通常结论相比,木文给出的结论可准确表达宽带条件卜的速度分辨力和LFM参数的定量关系.该定量关系为宽带条件下LFM的参数设计和性能分析建立了基础.

Abstract:  Velocity resolution is one of key characteristics of lincai-frequency modulated (LFM) signal. The existing quantitative relation between velocity resolution and LFM parameters is the analysis result based on narrowhand ambiguity function in approximate narrowhand condition. In widchand sonar or
ultra wideband radar applications, approximate narrowband condition is usually not satisfied.The existing quantitative relation of velocity resolution and LFM parameters is not applicable, and should be reanalyzed in wideband condition, In this paper, the implicit function between velocity resolution andL
FM’s parameters is established using wideband ambiguity function in widehand condition. Because the implicit equation cannot directly reflect the quantitative relation between velocity resolution and LFM parameters, a numerical analysis method for solving the implicit equation is employed in the paper. By
this method, velocity resolution is expressed as a multiplicative form of each single-parameter function, and figure out the expression of single-parameter function with a combination of employing equation extracting and curve fitting methods so as to integrate for the expression of velocity resolution. Applying
this method,the quantitative relation between velocity resolution and LFM parameters is analyzed and revealed.The result shows that velocity resolution is not only decided by LFM’s pulse width and central frequency, but also decided by LFM’s relative bandwidth. Verification experiment indicates that
comparing with the usual conclusion, the result of this paper can exactly express the quantitative relation between velocity resolution and LFM parameters in wideband condition.This quantitative relation lays the foundation for parameters design and performance analysis of LFM under wideband signal model.

[1]Bai Y C, Zhang X G, Tang L. Transverse ve- locity estimation based on Wigner-Hough trans- form. Journal of Nanjing University(Nature
Sciences), 2010, 46(4): 366-371.(柏业超,张兴敢,唐岚.基于Wigncr-Hough变换的横向速度估计.南京大学学报(自然科学),2010,46 (4):366一371).
[2]Wei Y,Zhang X G, Bai Y C. Analysis and simu- lation of an airborne weather radar. Journal of Nanjing University(Nature Sciences),2011,47
(1);13-18.魏耀,张兴敢,柏业超.一种机载前视风切变需达的信号分析及仿真.南京大学学报(自然科学),2011,47(1);13-18).
[3]Xiao W S, Zhang X G. Direction-of-arrival and frequency estimation in array signal processing based on blind source separation. Journal of
Nanjing University(Nature Sciences),2009,45 (4):465-472.肖文书,张兴敢.基于自源分离算法的阵列信号波达方向资顷率估计.南京大学
学报(自然科学),2009,45(4):465-472).
[4]Shui P L, Bao Z. Study of Wideband signal’s range and velocity resolutions. Acta Electronic Sinica, 1998,26(9) :25 -28.(水鹏朗,保铮.
宽带信号距离和速度分辨率的研究.电子学报,1998,26(9):25一28).
[5]Lin M Y,Ke Y A.Theory of Radar Signals. Bei- jing:Publishing House of Defense Industry Press,1981,115-122,198 -199.(林茂庸,柯有
安.需达信号理论.北京:国防工业出版社,1981:115一122,198一199).
[6]Zhu Y, Information Detection Theory of Active Sonar. Beijing; Publishing House of Science,1990,34-45,96-124.(朱垫.主动声纳检测
信息原理.北京:科学出版社,1990, 34-45, 96一124).
[7]Chen J Y,Xu J L. Research on the model and resolution of wideband signal. Chinese Journal of Radio Science,2001,16(1):128一130.(陈
隽永,徐继麟.宽带信号模型及分辨力性能研究.电波科学学报,2001,16(1);128 -130).
[8]Zhu Y F, Zhao H Z, Fu Q. Imaging character- istic analysis of SFR by wideband ambiguity function. Systems Engineering and Electronic,
2010, 32(9) : 1889-1893.(朱永锋,赵宏钟,付 强.基于宽带模糊函数的步进频需达成像特性分析.系统工程与电子技术,2010,32(9):1889 一1893).
[9]Li L,Ren L X,Mao E K,et al. Wideband am- biguity function of stepped frequency waveform and its application.Transactions of Beijing in-
stitute of Technology, 2011,31(7):844一848. (李磊,任丽香,毛二可等.频率步进信号宽带模糊函数及其应用.北京理工大学学报,2011,31(7):844一848) .
[10]Shi X T,Wang H,Chen J J,et al. Wideband ambiguity function of OFDM radar signal. Ra- dar Scicncc and Technology, 2010,8(6):554一
558.(施祥同,王虎,陈建军等.OFDM需达信号的宽带模糊函数性能分析.需达科学与技术,2010,8(6) :554一558).
[11]Wei X Z H,Liu Z H,Deng B, et al. Research on velocity measurement of wideband costar co- ded stepped frequency radar signal. Acta Eler
tronic Sinica, 2010,38(10):2426一2429.(魏玺章,刘振,邓斌等.C ostas编码跳频宽带需达信号测速技术研究.电子学报,2010, 38(10) :2426一2429).
[12]Kelly E J,Wishner R P. Matched-filter theory for high-velocity accelerating targets. IEEE Transactions on Military Electron, 1965,9:56~69.
[13]Tian T.Technology of Sonar (2nd ed). Harbin; Harbin Engineering Press,2010,24一30.(田坦.声纳技术(第二版).
哈尔滨:哈尔滨工业大学出版社,2010,24-30).





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