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Volume 29 Issue 7
Jan.  2011
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Zhu Jia-bing, Hong Yi, Tao Liang, Lu Jia-guo. Direct-Path Cancellation to FM Broadcast Transmitter Radar Based on Adaptive Fractional Delay Estimation[J]. Journal of Electronics & Information Technology, 2007, 29(7): 1674-1677. doi: 10.3724/SP.J.1146.2005.01639
Citation: Zhu Jia-bing, Hong Yi, Tao Liang, Lu Jia-guo. Direct-Path Cancellation to FM Broadcast Transmitter Radar Based on Adaptive Fractional Delay Estimation[J]. Journal of Electronics & Information Technology, 2007, 29(7): 1674-1677. doi: 10.3724/SP.J.1146.2005.01639

Direct-Path Cancellation to FM Broadcast Transmitter Radar Based on Adaptive Fractional Delay Estimation

doi: 10.3724/SP.J.1146.2005.01639
  • Received Date: 2005-12-19
  • Rev Recd Date: 2006-07-21
  • Publish Date: 2007-07-19
  • One of the major problems in continuous wave bistatic radar is direct-path interference. Conventional solutions to this problem is the use of an adaptive antenna, steering null towards the interference. Unfortunately the null depth obtained by this technology is not enough for surveillance radar. First of all, direct-path interference appeared in bistatic radar based on FM broadcast transmitter is analyzed in the paper; Secondly, a solution based on adaptive fractional delay estimation is introduced how to deal with this problem; Finally, a bistatic radar experimental system based on FM broadcast transmitter is discussed. Simulation results with real collected data show applying the method has better the performance of target detection.
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  • Baniak J, Baker G, and Cunningham A M. et al.. Silent sentry TM passive surveillance, technology report, Lockheed Martin Mission Systems, Gaithersburg, MD, Jun.1999.[2]Griffith H D and long B A. Television based bistatic radar [C]. IEE Proceedings, Part F, 1986. 133(7): 649-657.[3]Howland P E. Target tracking using television-based bistatic radar [J].IEE Proceedings Radar, Sonar and Navigation.1999, 146(3):166-174[4]Griffith H D. From a different perspective- principles, practice and potential of bistatic radar[C]. Proceedings of the International Radar Conference, Adelaide, Australia, Sept. 2003: 1-7.[5]Saini R, Cherniakov M, and Lenive V. Direct path interference suppression in bistatic system DTV based radar. Proceedings of the International Radar Conference. Adelaide, Australia, Sept. 2003: 309-314.[6]So H C. Analysis of an adaptive algorithm for unbiased multipath time delay estimation [J].IEEE Trans. on Aerospace and Electronic Systems.2003, 39(3):777-785[7]Chan Y T, Riley J M F, and Plant J B. Modeling of time-delay and its application to estimation of nonstationary delay [J]. IEEE Trans. on Acoust, Speech, Signal Processing, 1981 29(3): 577-581.[8]So H C and Ching P C. A generalized equalization-based algorithm for multipath time delay estimation [J]. 1996 IEEE International Symposium on Circuits and Systems, Atlanta, USA.1996, 2: 556-559.[9]Widrow B and stearns S D. Adaptive Signal Processing. Englewood Cliffs, NJ: Prentice-Hall, 1985: 335-356.[10]Ching P C and So H C. Two adaptive algorithms for multipath time delay estimation [J].IEEE Journal of Oceanic Engineering.1994, 19(3):458-463[11]So H C, Ching P C, and Chan Y T. A new algorithm for explicit adaptation of time delay[J].IEEE Trans. on Signal Processing.1994, 42(7):1816-1820
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