ECCM schemes in netted radar system based on temporal pulse diversity

来源 :Journal of Systems Engineering and Electronics | 被引量 : 0次 | 上传用户:yweifeng
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For a netted radar system to counteract the deception electronic countermeasure(ECM) signals, an effective electronic counter countermeasure(ECCM) approach is proposed. The proposed approach is realized based on the new signaling strategy for the temporal pulse diversity, which makes use of transmitting pulses at each pulse repetition interval(PRI) with specific transmission pulse block, and then following proper processing and information fusion. The existence of the deceptive ECM signal is confirmed by one station, while the other stations in the netted radar with same parameters applied the pulse diversity skillfully.Meanwhile, this method ensured that, pulse diversity can be applied in netted radar. The performance assessment shows that the proposed solutions are effective in presence of ECM signals. This algorithm has been demonstrated by simulations. The presented simulation results are in excellent consensus with theoretical predictions. For a netted radar system to counteract the deception electronic countermeasure (ECM) signals, an effective electronic counter countermeasure (ECCM) approach is proposed. The proposed approach is realized based on the new signaling strategy for the temporal pulse diversity, which makes use of transmitting pulses at each pulse repetition interval (PRI) with specific transmission pulse block, and then following proper processing and information fusion. The existence of the deceptive ECM signal is confirmed by one station, while the other stations in the netted radar with same parameters applied the pulse diversity skillfully.Meanwhile, this method ensured that, pulse diversity can be applied in netted radar. The performance assessment shows that the proposed solutions are effective in presence of ECM signals. This algorithm has been demonstrated by simulations. The presented simulation results are in excellent consensus with theoretical predictions.
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