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首页> 外文期刊>The Journal of Engineering >CIAPC algorithm for random frequency-hopping radar
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CIAPC algorithm for random frequency-hopping radar

机译:CIAPC算法<?显示[AQ =“ID =”Q1“”?>随机跳频雷达

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摘要

In random frequency-hopping pulse-Doppler radar, the transmitted frequencies are randomly distributed in the given frequency bandwidth. As a result, this kind of radar has the advantage of anti-jamming. However, because of the sidelobe level fluctuating randomly, the sidelobe of a large scatterer can mask the presence of nearby smaller scatterers. The adaptive pulse compression (APC) algorithm has been shown capable of effectively suppressing the range sidelobes, but the performance gain is diminished whenever the return signals have a low signal-to-noise ratio (SNR). Furthermore, moving targets with high speed bring about the range migration problem. To solve these problems, the coherent integration APC (CIAPC) algorithm is proposed. The simulation results indicate that in a low SNR scenario, the CIAPC algorithm can suppress the range sidelobes of large scatterers and can improve detection performance.
机译:在随机跳频脉冲多普勒雷达中,透射频率在给定的频率带宽中随机分布。结果,这种雷达具有抗干扰的优点。然而,由于侧链水平随机波动,大散射体的侧瓣可以掩盖附近较小散射体的存在。已经示出了自适应脉冲压缩(APC)算法能够有效地抑制范围侧瓣,但是只要返回信号具有低信噪比(SNR),性能增益就会减小。此外,通过高速带来的目标迁移到范围迁移问题。为了解决这些问题,提出了相干积分APC(CIAPC)算法。仿真结果表明,在低SNR场景中,CIAPC算法可以抑制大散射体的范围侧瓣,可以改善检测性能。

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