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Volume 24 Issue 9
Sep.  2002
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Yang Shaolin, Ke Hengyu, Tian Jiansheng, Wu Shicai, Yang Zijie . Self-calibration method of channel amplitude of HF ground wave radar based on sea echo[J]. Journal of Electronics & Information Technology, 2002, 24(9): 1233-1237.
Citation: Yang Shaolin, Ke Hengyu, Tian Jiansheng, Wu Shicai, Yang Zijie . Self-calibration method of channel amplitude of HF ground wave radar based on sea echo[J]. Journal of Electronics & Information Technology, 2002, 24(9): 1233-1237.

Self-calibration method of channel amplitude of HF ground wave radar based on sea echo

  • Received Date: 2001-03-02
  • Rev Recd Date: 2001-10-09
  • Publish Date: 2002-09-19
  • A software self-calibration method of the channel amplitude of HF ground wave radar based on the received sea echo data is developed in this paper, in accordance with the characteristics of sea echo and the actual performance of the Ocean State Measuring and Analyzing Radar (OSMAR2000). The method does not need auxiliary signal source and can real-time calibrate channel amplitude for every range cell. Using the method, the radar system can give out warning information in the case of channel failure. The quality of spatial spectra improves much after channel amplitude calibration by the method. Some processing results of the OSMAR2000 field measurement and their comparison are illustrated in this paper.
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  • 杨绍麟,柯亨玉,侯杰昌等,OSMAR2000基于MUSIC的超分辨率海洋表面流算法,863计划818-01-02课题-高频地波雷达海洋环境监测技术资料集,2000,12,137-145.[2]李全力,肖克赐,空间谱估计测向系统信道失配的单信号源校准方法,电子学报,1991,19(2),123-125.[3]杨超,阮颖铮,空间谱估计测向中通道失配与阵元互耦的一次性补偿,电子科学学刊,1995,17(2),206-209.[4]姚康泽,梁甸农,模型误差对阵列信号特征结构的影响及一种校准方法,系统工程与电子技术,1996,18(8),44-47.[5]王学礼,李舜酩,陈仲仪等,多信号源方向和频率估计中通道失配和阵元互耦的一次性补偿,电子科学学刊,2000,22(1),28-34.[6]D.E. Barrick, J. M. Headrick, R. W. Bogle, D. D. Crombie, Sea backscatter at HF: interpretationand utilization of the echo. Proc. IEEE, 1974, 62(6), 673-680.[7]B.J. Lipa, D. E. Brarrick, Least-squares methods for the extraction of surface currents fromCODAR crossed-loop data: application at ARSLOE, IEEE J. of Oceanic Engineering, 1983, 8(4),226-253.
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