期刊文献+

一种自适应补偿天波雷达系统中电离层运动的方法(英文) 被引量:3

A Method to Adaptively Compensate for Ionospheric Layer Movement in HF Sky Wave Radar Systems
下载PDF
导出
摘要 在天波雷达中电离层的运动会带来回波信号在频率的调制,从而造成雷达海杂波的展宽;在对回波做相关积累前,对调制的补偿是非常重要的。该文给出了一种新的基于修正的自适应短时傅立叶变换的补偿方法,通过对没有电离层扰动的高频表面波雷达数据人为地添加行进电离层扰动(TID)得到实验数据。测试结果表明,该方法能有效地补偿快速的TID污染,并且对不同电离层频率调制具有良好的自适应性。 The ionospheric layer movement produces frequency modulation for the HF sky-wave radar signal such that the sea clutter is broadened in Doppler domain. Compensation for the modulation is significant before radar coherent integration. This paper addresses a modified adaptive short time Fourier transform (MASTFT) and proposes a MASTFT-based compensation method. Experimental tests are constructed by inducing the contamination of simulative traveling ionospheric disturbance (TID) to the undisturbed data collected by high frequency surface wave radar (HFSWR). The test results show that the proposed method can effectively compensate even for rapid TID and has good adaptability for different ionospheric frequency modulations.
出处 《电子科技大学学报》 EI CAS CSCD 北大核心 2008年第3期335-338,共4页 Journal of University of Electronic Science and Technology of China
基金 新世纪优秀人才支持计划 高等学校学科创新引智计划(B07046) 国家863计划(2007AA12Z159)~~
关键词 频率调制 电离层 短时傅里叶变换 天波雷达 frequency modulation ionosphere short time Fourier transform sky wave radar
  • 相关文献

参考文献10

  • 1HEADRCK J M, SKOLNIK M I. Over-the-horizon radar in the HF band[J]. Proc IEEE, 1974, 62(6): 665-673.
  • 2HOWLAND P E, COOPER D C. Use of the Wigner-Ville distribution to compensate for ionospheric layer movement in high-frequency sky-wave radar systems[J]. Radar and Signal Procoedings-F, 1993, 140(1): 29-36.
  • 3GAUTHER F, BOURDILLON A, PARENT J. On the estimation of quasi-instantaneous frequency modulation of I-IF signals propagated through the ionosphere[J]. IEEE Trans on Antennas Propagat, 1990, 38(3): 405-411.
  • 4LU Kun, WANG Jiong, LIU Xiong-zhao. A piecewise parametric method based on polynomial phase model to compensate ionospheric phase contamination[C]//IEEE International Conference on ASSP-Proceedings. New York: Institute of Electrical and Electronic Engineers, 2003: 405-408.
  • 5ANDERSON S J, ABRAMOV Y I. A unified approach to detection, classification, and correction of ionospheric distortion in HF sky wave radar systems[J]. Radio Sci, 1998, 33(4): 1055-1067.
  • 6HARMANCI K, KROLIK J. Matched window processing for mitigating over-the-horizon radar spread Doppler clutter[C]//IEEE International Conference on ASSP Proceedings. New York: Institute of Electrical and Electronic Engineers, 1999: 2789-2792.
  • 7JONES R M, GEORGES T M, RILEY J R Measured Ionospheric distortion of HF ground backscatter spectra[J]. IEEE Trans on Antennas Propagat, 1986, 34(4): 563-568.
  • 8KWOK H K, JONES D L. Improved instantaneous frequency estimation using an adaptive short-time Fourier transform[J]. IEEE Trans Signal Processing. 1990, 48(10): 2964-2971.
  • 9JONES D L, PARKS T W. A high resolution data-adaptive time-frequency representation[J]. IEEE Trans on ASSP, 1990, 38(12): 2127-2135.
  • 10BARRICK D E, HEADRICK J M, BOGLE R W, et al. Sea backscatter at HF: Interpretation and utilization of the echo[J]. Proc of IEEE, 1974, 62(6): 673-680.

同被引文献12

引证文献3

二级引证文献23

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部