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Volume 23 Issue 12
Dec.  2001
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Chen Jianwen, Wang Yongliang, Huangfu Kan, Zhou Liangzhu. RESEARCH ON PRACTICAL APPROACHES TO SPACE-TIME ADAPTIVE PROCESSING FOR HELIBORNE BATTLEFIELD SURVEILLANCE RADAR[J]. Journal of Electronics & Information Technology, 2001, 23(12): 1284-1291.
Citation: Chen Jianwen, Wang Yongliang, Huangfu Kan, Zhou Liangzhu. RESEARCH ON PRACTICAL APPROACHES TO SPACE-TIME ADAPTIVE PROCESSING FOR HELIBORNE BATTLEFIELD SURVEILLANCE RADAR[J]. Journal of Electronics & Information Technology, 2001, 23(12): 1284-1291.

RESEARCH ON PRACTICAL APPROACHES TO SPACE-TIME ADAPTIVE PROCESSING FOR HELIBORNE BATTLEFIELD SURVEILLANCE RADAR

  • Received Date: 1999-11-09
  • Rev Recd Date: 2000-05-18
  • Publish Date: 2001-12-19
  • This paper studies the optional effective methods for clutter suppression and platform motion compensation in Heliborne Battlefield Surveillance Radar (HBSR), which includes the traditional DPCA method, -ADPCA method, -STAP method, -STAP method with random-element auxiliary channel and extended -STAP method. A comparative analysis is performed. Theoretical analysis and computer simulation further illustrates that the extended -STAP method is suitable for modern electronic warfare environment. It has stronger clutter and jamming rejection performance in the concentrated jamming environment and stronger error robustness in the non-ideal real environment (i.e., array element. amplitude and phase errors, helihorne crab, velocity error, etc).In addition, this method can be imple- merited easily for phased array heliborne radar as well as continuous antenna system. Therefore the extended -STAP approach is feasible and available for clutter suppression and platform motion compensation in HBSR.
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  • M.I. Skolnik, Radar Handbook, Second Edition, New York, McGraw-Hill, 1990, 16.1-16.8, 18.1-18.16.[2]R. Klemm, Adaptive airborne MTI with two dimensional motion compensation, IEE Proc.-F,1991, 138(6), 551-558.[3]I.S. Reed, J. D. Mallett, L. E. Brennan, Rapid convergence rate in adaptive arrays, IEEE Trans.on AES, 1974, AES-10 (6), 853-863.[4]R.D. Brown, M. C. Wicks, Zhang Y, Zhang Q, Wang H. A space-time adaptive processing approach for improved performance and affordability, IEEE National Radar Conference, MI,USA, 1996, 321-326.Wang H.[J].Zhang Q, R. D. Brown, M. C. Wicks, An improved and affordable space-time adaptive processing approach, IEEE International Radar Conference (CIEIRC96), Beijing, China.1996,:-[5]El-Azhary, M. S. Afifi, P. S. Excell, A simple algorithm for sidelobe cancellation in a partially adaptive linear array, IEEE Trans. on AP, 1988, 36(10), 1484-1486.[6]许志勇,AEW雷达空时二维自适应处理降维方法研究,[博士论文],西安电子科技大学,1997,9.
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