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Volume 21 Issue 5
Sep.  1999
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Tang Zhenyu, Wang Zhensong. A NEW OPERATION MODE OF RADAR WITH LFM BURST SIGNAL[J]. Journal of Electronics & Information Technology, 1999, 21(5): 671-678.
Citation: Tang Zhenyu, Wang Zhensong. A NEW OPERATION MODE OF RADAR WITH LFM BURST SIGNAL[J]. Journal of Electronics & Information Technology, 1999, 21(5): 671-678.

A NEW OPERATION MODE OF RADAR WITH LFM BURST SIGNAL

  • Received Date: 1998-11-06
  • Rev Recd Date: 1999-03-13
  • Publish Date: 1999-09-19
  • In order to overcome the conflicts between high range resolution and wide bandwidth of Linear Frequency Modulated (LFM) signal, a new operating mode of radar is suggested. The radar signal is a series of LFM signal-LFM burst. When the echoes return, every burst was compressed with matched filter first. Integration was accomplished later among these bursts to improve the range resolution. LFM burst mode can raise the radar range resolution several times without widening the system bandwidth. On the other han...
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  • Skolnik M I, Radar Handbook 2nd ed., New York: McGraw-Hill Inc. 1990, Chapter 21.[2]Mudukutore A S, Chandrasekar V, Keeler J J. Pulse compression for weather radars on Geosci. Remote Sensing, 1998, GRS-36(1): 125-142.[3]Oppenheim A V. Application of Digital Signal Processing. Englewood Cliffs, N. J. Inc. 1978.244-260.[4]Zhimin Zhang, Zhensong Wang. The Coded Transmitting Pulses and Range Ambiguity Reduction of Spaceborne SAR. Microwave Remote Sensing for Earth Observarion. Beijing: Science Press, 1995,158-167.[5]Mitchell R L. Radar Signal Simulation. Dedham, Masschusetts: Artech House, 1976, 52-58.[6]Wehner D R. High-Resolution Radar. London: Artech House Boston. 1995, Chapter 5.[7]Dorey J, Garnier G, Auvray G. RIAS, Synthetic Impulse and Antenna Radar. International Conference on Radar, Paris: 1989, 556-562.[8]张庆文, 保铮. 综合脉冲与孔径雷达时空三维匹配滤波及性能分析. 电子科学学刊, 1994, 16(5): 481-489.[9]郑学合, 阮文杰. chirp子脉冲步进频率雷达信号的探讨. 北京宇航学会航天电子技术专业委员会第三届年会, 江西, 庐山:1997. 9, 50-57.
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