Yang Zhiqun, Ni Jinlin, Liu Guosui. Reducing sidelobe level of stretching pulse compression by subband delay compensation[J]. Journal of Electronics & Information Technology, 2003, 25(2): 212-217.
Citation:
Yang Zhiqun, Ni Jinlin, Liu Guosui. Reducing sidelobe level of stretching pulse compression by subband delay compensation[J]. Journal of Electronics & Information Technology, 2003, 25(2): 212-217.
Yang Zhiqun, Ni Jinlin, Liu Guosui. Reducing sidelobe level of stretching pulse compression by subband delay compensation[J]. Journal of Electronics & Information Technology, 2003, 25(2): 212-217.
Citation:
Yang Zhiqun, Ni Jinlin, Liu Guosui. Reducing sidelobe level of stretching pulse compression by subband delay compensation[J]. Journal of Electronics & Information Technology, 2003, 25(2): 212-217.
In stretching processing system of linear FM, the frequency is in proportion to range and the delay of returns are different in different ranges. The single frequency pulses occupy different time intervals indicating the variation in time delay as a function of range after stretching processing. This will lead to high sidelobe when proceeding with a uniform weight in the whole time width. This paper describes a method of delay compensation with subband filter group. Sidelobe level of weighted signal will be greatly reduced after the synthesis of multiple channels.
W.G. Carrara, R. S. Goodman, R. M. Ma.jewski, Spotlight Synthetic Aperture Radar Signal Processing Algorithms, Boston, London, Aretch House, 1995, 26-30.[2]J.M. Headrick, J. F. Thomaso, Applications of high-frequency radar, Radio Science, 1998, 33(4),1045-1054.[3]水鹏朗,保铮,基于频带分割的超宽带雷达脉冲压缩方法,电子学报,1999,27(6),51-54.[4]M. Skolnik, G. Andrews, J. P. Hansen, Ultrawideband microwave-radar conceptual design.[J]. IEEE Aerospace Electronic Systems Magazine.1995,10(10):25-