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Volume 45 Issue 11
Nov.  2023
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WANG Wei, LI Mengliang, WANG Fulai, RAO Bin, CHENG Xu. An Optimization Method for Transmitting Waveform of Polarimetric Radar Against Interrupted Sampling Repeater Jamming[J]. Journal of Electronics & Information Technology, 2023, 45(11): 3877-3886. doi: 10.11999/JEIT221469
Citation: WANG Wei, LI Mengliang, WANG Fulai, RAO Bin, CHENG Xu. An Optimization Method for Transmitting Waveform of Polarimetric Radar Against Interrupted Sampling Repeater Jamming[J]. Journal of Electronics & Information Technology, 2023, 45(11): 3877-3886. doi: 10.11999/JEIT221469

An Optimization Method for Transmitting Waveform of Polarimetric Radar Against Interrupted Sampling Repeater Jamming

doi: 10.11999/JEIT221469
Funds:  Shenzhen Science and Technology Program (KQTD20190929172704911), The Funds of National Ministries and Commissions (614222119021)
  • Received Date: 2022-11-23
  • Rev Recd Date: 2023-03-06
  • Available Online: 2023-03-10
  • Publish Date: 2023-11-28
  • Interrupted Sampling Repeater Jamming (ISRJ) has attracted increasing attention as a new type of active jamming. Polarization is an important parameter for characterizing an electromagnetic wave vector and can substantially improve radar anti-jamming performance. Therefore, in this study, the anti-ISRJ method of polarimetric radar is studied. Here, better anti-jamming performance than that of traditional radar is obtained through waveform design and optimization. Additionally, because the modulation effect of target characteristics on a signal is neglected in the existing characterization of the anti-ISRJ problem under wideband radar conditions, this paper includes target characteristics factors to the mathematical expression of SJR. Finally, on this basis, a waveform design method of anti-ISRJ polarimetric radar with Doppler tolerance is proposed. Experiments using the measured target data show that compared with traditional radar, the introduction of polarization information improves substantially radar ISRJ suppression performance; moreover, under wideband conditions, the modulation effect of the extended target on the signal must be considered when calculating SJR.
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